Tiezhen Ren | Advanced Materials Engineering | Research Excellence Award

Prof. Tiezhen Ren | Advanced Materials Engineering | Research Excellence Award

Xinjiang university | China

Prof. Dr. Tie-Zhen Ren is a distinguished Professor at the School of Chemical Engineering, Xinjiang University, China. She obtained her Ph.D. in Inorganic Materials Chemistry from the University of Namur (FUNDP), Belgium, where she completed a thesis on hierarchically nanoporous functional materials under the supervision of Prof. Bao-Lian Su. Prior to her doctorate, she studied Polymer Engineering at Tianjin Institute of Technology and later pursued graduate studies in Plant Protection at Anhui Agricultural University. Her academic career includes serving as a Professor at Hebei University of Technology (2007–2021), conducting postdoctoral research at Stockholm University in Sweden, and working as a visiting researcher at the City College of New York. Prof. Ren’s research focuses on the synthesis and characterization of nanostructured materials, mesoporous silica and metal oxide systems, photocatalysis, environmental materials, crystalline porous germanium oxides, catalyst development, and biomass-derived functional materials. She has extensive experience with advanced characterization techniques such as TEM, SEM-EDX, XRD, FT-IR, and electrochemical systems, and actively teaches courses such as General Chemistry, Chemical Engineering Principles, Catalysis, and Technical English. Prof. Ren has been the recipient of numerous prestigious honors, including the China National Scholarship for Outstanding Self-Financed Students Abroad, the Tianchi Talent Leader Award, and the Tianjin Natural Science Award. She has led multiple national and international research projects funded by the National Natural Science Foundation of China, Ministry of Education, and Xinjiang Autonomous Region, focusing on photocatalysis, nanocatalyst design, biomass valorization, and environmental remediation. She has authored and co-authored more than 80 peer-reviewed scientific publications across high-impact journals and continues to contribute to research in sustainable chemistry, catalysis, and materials science. She is fluent in English and Chinese and has basic proficiency in French.

Profiles: Scopus | Orcid

Featured Publications

Huang, S., Zhang, H., Zhang, T., Li, C., Ren, T., & He, Z. (2025). High‐efficiency exfoliation of atomically‐thin non‐Van der Waals quasicrystal nanosheets with enhanced electrocatalytic oxygen evolution reaction performance. Small Methods. https://doi.org/10.1002/smtd.202501162


Song, Z.-H., Muhammad, I., Ren, T.-Z., Abulizi, A., Okitsu, K., Li, H.-R., & Zhang, X.-J. (2025, March 27). Preparation of Al₂O₃ nanoparticles via fluidized roasting and their application in the pyrolysis of spent mulching film for hydrocarbon production. ACS Sustainable Resource Management. https://doi.org/10.1021/acssusresmgt.4c00436


Han, J., Sun, L., Ulbricht, M., Fischer, L., Zhang, G., Gao, W., Lv, L., Ren, T., Liu, X., & Ren, Z. (2025). Sulfite enhanced permanganate/Fe(II) moderate oxidation coagulation for the treatment of algae-laden water: Performance and mechanisms. Chemical Engineering Journal. https://doi.org/10.1016/j.cej.2024.159084


Fu, H., Bai, H., Abulizi, A., Okitsu, K., Maeda, Y., Ren, T., & Wang, S. (2024). Surfactant-enhanced ZnOₓ/CaO catalytic activity for ultrasound-assisted biodiesel production from waste cooking oil. Reaction Chemistry & Engineering. https://doi.org/10.1039/D3RE00306J


Cui, M.-J., Li, S.-S., Ren, T., Abulizi, A., & Nulahong, A.-S. (2024). Boosting BaTi₄O₉ photocatalytic H₂ evolution activity by functionalized CuNi alloy. Journal of Photochemistry and Photobiology A: Chemistry. https://doi.org/10.1016/j.jphotochem.2024.115834


Cui, M.-J., Muhammad, I., Feng, J., & Ren, T. (2024). Isopropanol assisted preparation of α–Al₂O₃ nanoparticles and its surface charge investigation. Solid State Sciences. https://doi.org/10.1016/j.solidstatesciences.2024.107706

Yurou Liu | Management and Accounting | Research Excellence Award

Assist Prof Dr. Yurou Liu | Management and Accounting | Research Excellence Award

southwest Jiaotong University | China

Dr. Yurou Liu is an emerging scholar and Assistant Professor at Southwest Jiaotong University, China, with a strong academic foundation supported by a Ph.D. from Renmin University of China and international experience as a visiting researcher at the National University of Singapore. Her research sits at the intersection of law and finance, earnings management, and tax avoidance, with a particular focus on how legal systems, regulatory frameworks, and governance arrangements influence corporate financial decision-making and strategic behavior. Dr. Liu has successfully led three funded research projects, including a prestigious National Natural Science Foundation Youth Project, as well as grants from the Ministry of Education and Renmin University, demonstrating her ability to secure competitive research funding and contribute to national academic priorities. Complementing her academic research portfolio, she has also engaged with industry through a consultancy research project commissioned by the Shanghai Municipal Audit Bureau, focusing on the development and international benchmarking of audit mechanisms in the China (Shanghai) Pilot Free Trade Zone, showcasing applied policy relevance and societal impact. Dr. Liu has published eight peer-reviewed journal articles in highly regarded and internationally indexed outlets, including the Journal of Corporate Finance, Journal of Business Ethics, British Accounting Review, and Accounting and Business Research, along with other respected journals in the field of accounting and finance. Her research has received growing scholarly recognition, accumulating more than 120 citations on Google Scholar, reflecting increasing influence and relevance within the academic community. Through her empirical work, Dr. Liu provides novel insights into how judicial efficiency affects corporate investment and financing behavior, how reforms and dispute resolution mechanisms influence financial misconduct, and how disclosure policies and governance systems shape innovation, transparency, and market response. Her findings contribute meaningful evidence supporting improved investor protection, enhanced regulatory enforcement, reduced financial risk, and greater accountability within corporate systems. With a research agenda aligned toward public governance, financial integrity, and evidence-based regulation, Dr. Liu contributes rigorously to both theoretical advancement and policy development. Her academic achievements, demonstrated leadership in funded research, and impactful publications underscore her growing standing as a promising young scholar in the global research community. Her commitment to research excellence, ethical scholarship, and continuous contribution to knowledge makes her a strong candidate for recognition under the Research Excellence Award.

Profiles: Scopus | Google Scholar

Featured Publications

Liu, Y. (2023). Judicial independence and crash risk: Evidence from a natural experiment in China. Journal of Corporate Finance, 83, Article 102490.

Liu, Y. (2022). Investor protection and audit fees: Evidence from the E-interaction platform in China. Accounting and Business Research, 52(7), 815–837.

Liu, Y., & Liu, J. (2024). Social integrity and stock price crash risk. Journal of Business Ethics, 190(3), 703–721.

Liu, J., Ye, K., & Liu, Y. (2023). Mandatory information disclosure and innovation: Evidence from the disclosure of operational information. China Journal of Accounting Research, 16(2), Article 100294.

Liu, Y. (2023). The high-speed railway opening and audit quality: Evidence from China. Economic and Political Studies, 11(4), 494–515.

Liu, Y., Ye, K., & Liu, J. (2023). Major asset restructuring performance commitments and classification shifting through non-recurring items. China Journal of Accounting Studies, 11(2), 270–299.

Liu, Y., & Chen, H. (n.d.). Does retail investor attention deter or promote earnings management? Evidence from interactive platforms. (Publication status unknown).

 

Qingguo Ma | Chemical Engineering | Excellence in Innovation Award

Dr. Qingguo Ma | Chemical Engineering | Excellence in Innovation Award

Taiyuan Institute of Technology | China

Dr. Qingguo Ma, an accomplished Associate Professor at the Taiyuan Institute of Technology, is a distinguished researcher specializing in advanced wastewater treatment, particularly in the catalytic degradation of formaldehyde. With a doctoral degree obtained from the School of Chemical Engineering and Technology at Nanjing University of Science and Technology, Dr. Ma has established a focused research trajectory in the development of innovative and efficient oxidation-based solutions for industrial pollutant removal. His work emphasizes the use of advanced oxidation processes employing oxidants such as hydrogen peroxide and monopersulfate in conjunction with highly efficient catalytic systems, including transition metal oxides and lanthanum-based composite metal oxide catalysts. Through this research, Dr. Ma has successfully achieved remarkable improvements in formaldehyde degradation efficiency, notably demonstrating degradation rates exceeding 90% under ambient conditions without the need for acidic, alkaline, photochemical, or electrocatalytic environments. This breakthrough shortens the oxidative degradation time by up to 12 times compared to conventional heterogeneous catalysts and provides a scalable pathway toward cost-effective and energy-efficient wastewater treatment technologies. Dr. Ma’s academic contributions are supported by a robust research profile, including five completed or ongoing research projects, eleven patents published or under application, and thirteen peer-reviewed publications indexed in SCI databases. His work has attracted growing scholarly attention, reflected in a developing citation index and engagement in two consultancy or industry-linked research initiatives. As a member of the Shanxi Provincial Society for Inspection and Testing, he actively contributes to the advancement of environmental monitoring and chemical engineering practices within the professional community. His research further explores the mechanistic pathways of formaldehyde oxidation, identifying both radical-driven and non-radical catalytic routes, which enhances scientific understanding and offers new design concepts for catalytic materials used in environmental remediation. Dr. Ma continues to expand collaborations and strengthen knowledge transfer through academic platforms, contributing meaningfully to scientific and societal progress in pollution control. With demonstrated excellence, innovation, and commitment to advancing sustainable wastewater treatment technologies, he exemplifies the qualities recognized by the Excellence in Innovation Award. Dr. Ma affirms the authenticity and accuracy of all information included in this application and acknowledges the guidelines and terms set forth for this nomination.

Profiles: Scopus | Orcid

Featured Publications

Ma, Q. (2024). Preparation of perovskite-type LaMnO₃ and its catalytic degradation of formaldehyde in wastewater. Molecules, 29(16). https://doi.org/10.3390/molecules29163822

Ma, Q. (2023). Removal of formaldehyde in water with low concentration of hydrogen peroxide catalyzed by lanthanum–silicon oxide composite. Desalination and Water Treatment, 29734. https://doi.org/10.5004/dwt.2023.29734

Ma, Q. (2023). The Baeyer–Villiger oxidation of cycloketones using hydrogen peroxide as an oxidant. Catalysts, 13(1). https://doi.org/10.3390/catal13010021

Ma, Q. (2022). Removal of formaldehyde from aqueous solution by hydrogen peroxide. Journal of Water Chemistry and Technology, 44(4). https://doi.org/10.3103/S1063455X22040099

Ma, Q. (2021). Enhancing propene selectivity in methanol and/or butene conversion by regulating channel systems over ZSM-5/ZSM-48 composite zeolites. Microporous and Mesoporous Materials, 310. https://doi.org/10.1016/j.micromeso.2020.110803

Ma, Q. (2015). Baeyer–Villiger oxidation of cyclic ketones with hydrogen peroxide catalyzed by silica–VTMO–OSO₃H. Journal of Porous Materials, 22(5). https://doi.org/10.1007/s10934-015-9918-8

Ma, Q. (2015). Silica/A153-SO₃H: An efficient catalyst for the Baeyer–Villiger oxidation of cyclic ketones with hydrogen peroxide. Comptes Rendus Chimie, 18(4). https://doi.org/10.1016/j.crci.2014.09.002

Ma, Q. (2015). Sn-bentonite-induced Baeyer–Villiger oxidation of 2-heptylcyclopentanone to δ-dodecalactone with aqueous hydrogen peroxide. Research on Chemical Intermediates, 41(5). https://doi.org/10.1007/s11164-013-1342-6

Thierry Ngouana Kammalac | Medical Mycology | Best Research Article Award

Dr. Thierry Ngouana Kammalac | Medical Mycology | Best Research Article Award

Laboratoire Sion| Cameroon

Dr. Ngouana Kammalac Thierry is an accomplished Cameroonian biochemist and medical mycologist with extensive experience in microbial diagnostics, infectious disease research, and biotechnology innovation. He holds a PhD in Biochemistry and Health Sciences (2014), jointly awarded by the University of Montpellier in France and the University of Yaoundé I in Cameroon, where his doctoral work focused on the genetic diversity of Cryptococcus and Candida isolates in HIV-positive patients and their susceptibility to antifungal therapies and medicinal plant extracts. He also holds a Master’s degree in Biochemistry (2009) from the University of Yaoundé I. Dr. Ngouana has built an exceptional career at the intersection of laboratory science, diagnostic technology, and academic instruction. As Director of Zion Biomedical Corporation since 2023, he leads the development and large-scale production of innovative biomedical products, including lateral flow immunochromatographic diagnostic tests, microbial culture media, and specialized staining dyes, contributing to improved diagnostic capacities in the region. Since 2016, he has also served as Director of Zion Medical Laboratory, where he oversees scientific development, clinical diagnostics, and antimicrobial resistance surveillance. His laboratory plays a crucial role in cryptococcal meningitis diagnosis among HIV-infected patients, the establishment of microbial standard operating procedures (SOPs), and the strengthening of Cameroon’s diagnostic infrastructure. Alongside his laboratory leadership, Dr. Ngouana has been an associate lecturer at the Catholic University and the Protestant University of Central Africa since 2015, teaching courses in medical mycology, biochemistry, and bacteriology. He has a strong publication record, contributing to high-impact research on Candida genetic diversity, antifungal resistance, pathogenic yeast epidemiology, and bioactive compounds from medicinal plants. His work has appeared in reputable journals such as Brazilian Journal of Microbiology, American Journal of Microbiological Research, Mycoses, Journal de Mycologie Médicale, Medical Mycology, and Journal of Medical Microbiology. Notable contributions include studies revealing novel genotypes of Candida species, antifungal susceptibility patterns in Africa and Europe, and plant-derived compounds with potent antifungal activity. Dr. Ngouana’s expertise spans molecular diagnostics, PCR, microscopy, microbial culture, infection control, and data analysis, supported by strong research methodology and teamwork competencies. He is an active member of the FAILSAFE Medical Mycology Network, the Cameroonian Society of Microbiology, and the French Society of Medical Mycology, reflecting his engagement in global scientific collaboration and capacity building in medical mycology.

Profiles: Scopus | Orcid

Featured Publications

Ngouana, T. K., Dougue, A. N., Ngouana, V., Tsayem, R. F., Mahamat, Y. H., Boyom, F. F., & Ranque, S. (2025). Vulvo-vaginal candidiasis at the Zion Clinical Laboratory (Yaounde-Cameroon): Risk factors, species distribution and antifungal susceptibility testing. Journal of Medical Mycology,

Kountchou, C. L., Kabtani, J., Dougue, A. N., Nangwat, C., Ekpo, A. I., Ngonde, M. C., Mogo, C. B., Dzoyem, J. P., Ranque, S., & Ngouana, T. K. (2025). Candida krusei (Pichia kudriavzevii) multilocus sequence typing and antifungal susceptibility profile in Cameroon. Brazilian Journal of Microbiology.

Bramhaiah Kommula | Materials Science | Best Researcher Award

Assist Prof Dr. Bramhaiah Kommula | Materials Science | Best Researcher Award

Assist Prof Dr. Bramhaiah Kommula | St. Joseph’s University Bangalore | India

Dr. Bramhaiah Kommula is an accomplished researcher and academic currently serving as an Assistant Professor in the Department of Chemistry at St. Joseph’s University, Bengaluru. His research embodies a multidisciplinary approach at the intersection of nanomaterials, photochemistry, and sustainable energy, with a focus on developing advanced functional luminescent nanomaterials for energy conversion, storage, and environmental remediation. Dr. Kommula earned his Ph.D. in Chemistry from Mangalore University in 2018 under the supervision of Dr. Neena S. John at the Centre for Nano and Soft Matter Sciences (CeNS), Bengaluru, where he investigated the “Synthesis and Properties of Graphene-Based Hybrid Materials Employing Chemical Routes.” Following his doctoral studies, Dr. Kommula pursued postdoctoral research at prestigious institutes including IISER Berhampur (2019–2022) with Dr. Santanu Bhattacharyya and IISER Mohali (2022–2024) with Prof. Ujjal K. Gautam. His postdoctoral work focused on the design and engineering of carbon-based nanostructures and their photocatalytic applications in solar fuel generation, hydrogen evolution, and selective organic transformations. He also contributed to the development of metal-free, waste-derived carbon dots and explored their photophysical properties for green hydrogen production, CO₂ reduction, and photoinduced organic catalysis. Dr. Kommula’s current research at St. Joseph’s University integrates nanomaterial synthesis, photophysical studies, and energy applications, emphasizing sustainable approaches to convert plastic waste into high-value carbon dots (CDs) and utilize them as efficient metal-free photocatalysts. Dr. Kommula has also authored several book chapters published by Springer Nature and holds a provisional Indian patent on graphitic carbon dots. Dr. Kommula’s research excellence has been acknowledged through several prestigious fellowships, including Institute Postdoctoral Fellowships from IISER Mohali and IISER Berhampur, and DST Senior and Junior Research Fellowships. His scientific leadership is evident in his ongoing supervision of three Ph.D. students and his submission of major national funding proposals under ANRF and DST schemes aimed at developing sustainable photocatalytic systems for hydrogen and value-added chemical production. Overall, Dr. Bramhaiah Kommula’s research exemplifies innovation-driven science that bridges materials chemistry and renewable energy technologies. His long-term goal is to pioneer eco-friendly nanomaterials that transform environmental waste into useful resources, contributing significantly toward achieving sustainable energy solutions and carbon-neutral technologies for the future.

Profiles: Orcid | Google Scholar

Featured Publications

Kommula, B., & Sriramadasu, V. K. (2025). Room temperature red phosphorescence enabled by alkali treatment in niobium carbide-derived carbon dots. Journal of Luminescence, 274, 121591. https://doi.org/10.1016/j.jlumin.2025.121591

Roy, R. S., Sil, S., Mishra, S., Banoo, M., Swarnkar, A., Kommula, B., De, A. K., & Gautam, U. K. (2025). Layer width engineering in carbon nitride for enhanced exciton dissociation and solar fuel generation. ACS Materials Letters, 7(4), 1385–1393.

Mandal, R., Biswal, J. R., Kommula, B., & Bhattacharyya, S. (2025). 2,2′:5′,2″:5″,2‴‐Quaterthiophene nanoparticles and single-walled CNT composite: An organic nanohybrid for solar H₂ production and simultaneous photoreformation of plastic wastes. ChemCatChem, 17(3), e202500307.

Kommula, B., & Gautam, U. K. (2025). A two-step strategy for residue-free chemical conversion of plastic waste to carbon dots: Upscaling and solvent recycling prospects. Carbon, 234, 119960.

Dutta, B., Kommula, B., Kanwar, K., Gautam, U. K., & Sarma, D. (2025). Oxygen-harvesting carbon dot photocatalysts for ambient tandem oxidative synthesis of quinazolin-4(3H)-ones. Green Chemistry, 27(1), Article D5GC00962F.

Kommula, B., Kanwar, K., & Gautam, U. K. (2024). Waste polyethylene-derived carbon dots: Administration of metal-free oxidizing agents for tunable properties and photocatalytic hyperactivity. ACS Applied Materials & Interfaces, 16(31), 39470–39481.

July Villalba | Management and Accounting | Industry Impact Award

Prof. July Villalba | Management and Accounting | Industry Impact Award

Politecnico Grancolombiano | Colombia

Dr. July Alexandra Villalba Rodríguez, Ph.D. in Complex Thought (Multiversidad Real Edgar Morin, 2024), Magister in Innovation Management (Universidad Tecnológica de Bolívar, 2019), and Professional in International Business (Universidad Piloto de Colombia, 2014), has built a distinguished career as a program director, academic coordinator, and research-oriented educator. Her expertise bridges the domains of international business, innovation, and emerging technologies, fostering synergy between academia and industry. As a key academic partner in the Futurexpo Program, led by ProColombia, the Ministry of Commerce, Industry and Tourism, and the Politécnico Grancolombiano, Dr. Villalba has played a pivotal role in empowering Colombian entrepreneurs and business leaders to adopt digital innovation in their export strategies. Her national lectures on “The Use of Artificial Intelligence in Market Research” have reached over 3,200 participants, including entrepreneurs, students, and representatives from productive sectors across more than 33 municipalities in Colombia. This initiative aims to strengthen the export capabilities of micro, small, and medium-sized enterprises (MSMEs), democratizing access to cutting-edge technological tools. In conclusion, the Futurexpo initiative under Dr. Villalba’s academic leadership exemplifies research with measurable industrial, social, and economic impact. It not only enhances Colombia’s global competitiveness but also promotes the responsible and strategic use of artificial intelligence within local industries. This project stands as a testament to how innovation, education, and technology integration can collectively drive sustainable business growth and national progress.

Profiles: Orcid | Google Scholar

Featured Publications

Villalba Rodríguez, J. A. (2021). Ciudades globales e innovación: Partiendo del concepto a la realidad actual empresarial de Colombia. En Análisis de la transformación digital (Cap. 6).

Villalba Rodríguez, J. A. (2021). Del método científico a la innovación empresarial: Una reflexión compleja desde la transdisciplinariedad. Mundo FESC, (21). ISSN 2216-0388.

Villalba Rodríguez, J. A. (2021). Innovación: De la teoría a la realidad empresarial de Colombia. En Análisis de la transformación digital (Cap. 8).

Villalba Rodríguez, J. A. (2020). La responsabilidad social empresarial frente a los beneficios tributarios y la imagen corporativa. Apuntes Contables, (27).

Jinhua Zhu | Separation Sciences | Best Researcher Award

Prof Dr. Jinhua Zhu | Separation Sciences | Best Researcher Award 

Prof Dr. Jinhua Zhu | Henan University | China

Prof. Dr. Jinhua Zhu, a distinguished Professor and Doctoral/Master’s Supervisor at Henan University, is recognized as an Outstanding Youth of Henan Province. Her research centers on life separation science and the theory and application of chromatography technology, with impactful contributions in active component screening and functional drug delivery systems. She has published extensively in leading journals and has led numerous national and provincial research projects, advancing both theoretical and applied aspects of analytical chemistry.

Author Profile
Orcid

Education

Prof. Dr. Jinhua Zhu began her academic journey with a strong foundation in chemistry, cultivating an early passion for scientific inquiry and innovation. Her undergraduate studies provided her with a comprehensive understanding of core chemical principles, analytical thinking, and practical laboratory skills. This academic base ignited her curiosity in analytical chemistry, encouraging her to pursue advanced research in the field. As she progressed into doctoral studies, she immersed herself deeply in the study of separation science, chromatography, and applied chemical methodologies. Her doctoral training not only sharpened her research abilities but also nurtured her interest in solving real-world challenges related to drug discovery, environmental monitoring, and biochemical analysis. These formative years set the stage for her emergence as a respected academic, shaping her professional identity and building the foundation for her future contributions.

Experience

After completing her academic preparation, Prof. Zhu embarked on a professional journey that showcased her dedication to both teaching and research. She began her career in higher education, taking on roles that balanced classroom instruction with laboratory exploration. Her teaching portfolio has grown to include key undergraduate and graduate courses such as Instrumental Analysis, Separation Technology, and Modern Environmental Analysis Technology. Through these courses, she has not only transferred technical knowledge but also instilled scientific curiosity and critical problem-solving skills in her students. Alongside teaching, she pursued postdoctoral research, gaining deeper insights into advanced chemical analysis and international exposure through academic exchange programs. Her visiting scholarship abroad further broadened her scientific vision, allowing her to connect with global research trends and establish meaningful collaborations. Over time, her professional trajectory advanced steadily, reflecting her commitment to both academic excellence and innovative research leadership.

Research Focus

At the core of Prof. Zhu’s work lies her extensive contribution to life separation science and chromatography technology. Her research delves into both theoretical advancements and practical applications, making her work highly impactful in modern analytical chemistry. She has been particularly dedicated to the screening of bioactive components with hypoglycemic and anti-inflammatory properties, which has significant implications for therapeutic drug development. Another important dimension of her research is the construction and application of functional drug delivery systems, aimed at enhancing the effectiveness and precision of medical treatments. By combining fundamental chemical principles with applied research goals, Prof. Zhu bridges the gap between laboratory research and societal needs. Her publications in respected journals such as Separation and Purification Technology, Analytica Chimica Acta, Colloids and Surfaces B, and Talanta reflect her ability to contribute knowledge that is both novel and widely recognized in the scientific community.

Accolades and Recognition

Prof. Zhu’s academic journey has been marked by numerous awards, grants, and recognitions that highlight her leadership in chemistry and separation science. She has successfully led a variety of funded research projects, ranging from national-level grants to provincial programs that underscore her innovative contributions. Being recognized as an Outstanding Youth of Henan Province reflects not only her academic achievements but also her role as a model for emerging researchers in her region. These honors demonstrate her ability to consistently produce high-quality research, mentor the next generation of chemists, and push the boundaries of analytical methodologies. Her leadership in securing key projects at both national and provincial levels stands as testimony to her expertise, trustworthiness, and scientific vision.

Impact and Influence

The influence of Prof. Zhu extends beyond academic publications and research projects—her impact resonates within the broader scientific community and in real-world applications. Her work in drug delivery systems and natural product analysis offers pathways toward improved medical therapies, addressing health challenges such as diabetes and inflammation-related diseases. By developing innovative chromatography technologies, she has provided researchers with more efficient and precise analytical tools that can be applied in pharmaceutical, environmental, and food sciences. As a mentor and teacher, she has inspired numerous students, cultivating a culture of curiosity, discipline, and innovation in scientific practice. Her dual role as a researcher and educator ensures that her influence is both immediate in advancing scientific frontiers and long-lasting through the students she continues to guide.

Publication

Dual-monomer magnetic molecularly imprinted polymer for highly efficient luteolin separation from natural products.

Author: Yunfeng Yuan, Xiaoqi Liu, Chenjia Jiang, Haodong Zhou, Jinhua Zhu, Abdelhadi El Jaouhari, Xiuhua Liu, Minghua Lu*
Journal: Separation and Purification Technology,
Year: 2025

Three-dimensional ordered macro-microporous ZIF-8-α-Glu microreactors for α-glucosidase inhibitors screening from green tea.

Author: Xiaoqi Liu, Haodong Zhou, Chenjia Jiang, Yunfeng Yuan, Jinhua Zhu, Minghua Lu*
Journal: Talanta
Year: 2025

Phenylboronic acid functionalized magnetic ferroferric oxide nanoparticles and capillary electrophoresis for efficient isolation of flavonoid compounds from leaves of Lonicera japonica Thunb.

Author: Chenjia Jiang, Xiaoqi Liu, Yunfeng Yuan, Haodong Zhou, Jinhua Zhu, Minghua Lu*
Journal: Chromatography A,
Year: 2025

Conclusion

Prof. Dr. Jinhua Zhu stands as a leading figure in the field of analytical and separation science, with her research bridging theoretical chemistry and real-world biomedical applications. Through her pioneering work in chromatography, bioactive compound screening, and functional drug delivery systems, she has advanced both scientific knowledge and practical healthcare solutions. Her impactful publications, successful research leadership, and dedication to mentoring young scholars highlight her as a role model in academia. With continued innovation and global collaborations, Prof. Zhu’s contributions are set to leave a lasting legacy, shaping the future of separation science and strengthening its role in improving human health and well-being.

Sapna Bijimanzil Abdulkareem | Materials | Best Researcher Award

Dr. Sapna Bijimanzil Abdulkareem | Materials | Best Researcher Award 

Dr. Sapna Bijimanzil Abdulkareem | KIT-Kalaignarkarunanidhi Institute of Technology | India

Dr. Sapna B. A is an accomplished academic and researcher with over 15 years of combined experience in research, teaching, and industry. Currently serving as Assistant Professor at Kalaignarkarunanidhi Institute of Technology, Coimbatore, she specializes in high-performance antennas for UWB, biomedical, and next-generation wireless applications. Her career spans notable roles in academia and engineering design, complemented by significant contributions to AICTE-funded projects, international publications (15 SCI/Scopus indexed papers), conference presentations, and workshops. A recipient of multiple research excellence awards and grants, Dr. Sapna is also a recognized IEEE and ISTE life member, known for her expertise in CST Studio, HFSS, ADS, MATLAB, and LabVIEW.

Author Profile

Orcid

Education

From the outset of her academic journey, Dr. Sapna B. A demonstrated a strong commitment to excellence in the field of Electronics and Communication Engineering. She earned her B.E. in Electronics and Communication Engineering from Jerusalem College of Engineering, University of Madras in 2000, followed by an M.E. in Communication Systems from B.S.A Crescent Engineering College, Anna University in 2007 with an impressive 76% score. Her academic quest reached its pinnacle with a Ph.D. in Information and Communication Engineering from Anna University in 2022, under the guidance of Dr. G. Srivatsun at PSG College of Technology. Her doctoral thesis, “High Performance Antennas for UWB Applications”, laid a strong research foundation in advanced antenna design, integrating both theoretical depth and practical innovation. These formative years shaped her as a scholar with a deep curiosity for communication systems and a vision to contribute significantly to wireless technology.

Experience

Dr. Sapna’s professional path reflects a rare blend of academic leadership, research excellence, and industry expertise. She began her career as a Lecturer at CSI College of Engineering, The Nilgiris (2001–2005), and later at B.S.A Crescent Engineering College, Chennai (2007–2008), where she honed her teaching skills and laboratory development expertise. Transitioning into the corporate world, she worked as a Design & Estimation Engineer at Zahra Technology & Communication Systems, Dubai (2008–2011), leading projects in large-scale security systems for iconic sites like the Dubai Mall and Princess Tower.

Returning to academia, she served as Assistant Professor at RVS College of Engineering & Technology and INFO Institute of Engineering, where she coordinated NBA accreditation, organized conferences, trained GATE aspirants, and strengthened industry-academia collaborations. Since 2022, she has been an Assistant Professor at Kalaignarkarunanidhi Institute of Technology, Coimbatore, overseeing the ANSYS 5G Antenna Innovation Hub and leading AICTE-funded projects on wearable and implantable biomedical antennas.

Research Focus

Dr. Sapna’s research is deeply rooted in innovative antenna technologies for biomedical, wearable, and next-generation wireless communication systems. Her work spans the design of planar antennas for WLAN and UWB applications, gain and bandwidth enhancement through defected ground structures and partial reflecting surfaces, and the development of low SAR implantable antennas to ensure patient safety in biomedical contexts. She has also contributed significantly to the use of frequency selective surfaces (FSS) for improving UWB antenna performance, and has pioneered flexible, biodegradable antenna designs for Wireless Body Area Networks (WBAN), aligning with sustainable technology goals. Over the years, she has authored 15 international journal papers, several of which appear in high-impact SCI-indexed publications such as AEU – International Journal of Electronics and Communications, Frequenz, and International Journal of Microwave and Wireless Technologies. Her contributions have also been widely recognized in the conference circuit, with 10 international presentations, numerous Scopus-indexed proceedings, and regular invitations to review manuscripts for prestigious journals.

Award and Recognition

In recognition of her exemplary research and academic leadership, Dr. Sapna has earned numerous awards and competitive grants. She received the Best Paper Award at the IEEE-sponsored RAEEUCCI 2025 for her groundbreaking work on implantable antennas for ulcer monitoring. In 2024, she was honored with the Faculty Excellence Award by SNS Institutions for her outstanding achievements in research and publication. Her consistent performance has been further acknowledged by multiple cash awards from KIT, amounting to ₹48,000 in 2024–25 and ₹20,000 in 2023–24, celebrating her contributions to advancing institutional research output. Demonstrating her capacity to attract major funding, she secured AICTE support worth ₹8,50,000 to conduct advanced faculty development programs and workshops, fostering skill enhancement and research capabilities among peers. These achievements highlight not only her scholarly impact but also her ability to deliver tangible, high-value outcomes in the realm of applied research.

Impact and Influence

Dr. Sapna’s influence extends beyond publications—she has mentored UG and PG students, guided innovative projects, and organized numerous national and international workshops on antenna design, wearable devices, and 5G/6G technologies. She actively contributes to professional communities as a Life Member of ISTE and IEEE member, sharing expertise in CST Studio, HFSS, ADS, MATLAB, and LabVIEW. Her collaborative approach bridges academia, industry, and research, enabling students and peers to access cutting-edge developments in RF and microwave engineering.

Publications

A compact flexible and biodegradable dual wideband implantable antenna for biotelemetry.

Author: Sapna Bijimanzil Abdulkareem , Ramasamy Kuppusamy
Journal: Electronics and Communications
Year: 2025

A flexible wideband wearable CPW antenna for WBAN application.

Author: Sapna B. A. and Ramasamy K.
Journal: Frequenz
Year: 2025

An ultraminiaturized implantable antenna with low SAR for biotelemetry.

Author: Sapna B. A. and Ramasamy K.
Journal: RF & Antenna System
Year: 2025

A novel wearable monopole antenna with controlled SAR using metamaterial.

Author: Sapna B. A. , Ramasamy K. and M. Jayasheela
Journal: Microwave and Wireless Technologies
Year: 2023

Conclusion

Prof. A. Anil Kumar’s exceptional academic achievements, groundbreaking research in Chemical Sciences, and dedication to fostering innovation make him a distinguished candidate for the Best Researcher Award. His contributions have not only advanced scientific understanding but also inspired the next generation of researchers. With a strong record of impactful publications, mentorship, and commitment to solving real-world challenges, Prof. Kumar continues to demonstrate the qualities of a visionary leader in his field, fully deserving of this prestigious recognition.

Zu-Chian Chiang | Biochemistry | Best Researcher Award | 13347

Dr. Zu-Chian Chiang | Biochemistry | Best Researcher Award 

Dr. Zu-Chian Chiang, Fujian Normal University, China

Dr. Zu-Chian Chiang is a postdoctoral fellow at the Biomedical Research Center of Southern China, Fujian Normal University, China, with a rich background in materials and chemical engineering. His research contributions span antibody-drug conjugates (ADCs), functional peptide synthesis, biomaterials for regenerative medicine, and aptamer-based cancer therapy. His work has geographic impact across Taiwan and Mainland China, contributing to translational medicine and oncology through collaborative efforts with prestigious institutions like Academia Sinica and National Taiwan University. His applied research in ADCs and biomaterial scaffolds directly supports cancer treatment innovations. Notable projects include the development of CD47-targeting ADCs for non-small cell lung cancer, and thalidomide-PD1 combinations for enhanced immunotherapy. His publications in Frontiers in Oncology, PLOS ONE, and Current Pharmaceutical Biotechnology highlight his influence in drug delivery and cancer therapeutics. In the vector control domain, his scaffold research contributes to potential localized drug delivery systems. Dr. Chiang has received awards such as the Science and Technology Commissioner honor from Quanzhou and the Biotech Elite Training Award. His achievements exemplify impactful biomedical research with real-world therapeutic implications.

Profile

Scopus

🌱 Early Academic Pursuits

Dr. Zu-Chian Chiang embarked on his scientific journey with a passion for chemistry and materials science. He earned his Master’s Degree in Chemistry from Tunghai University, Taiwan (2005–2007), under the guidance of Prof. Feng-Di Lung. Building on this solid foundation, he pursued his Ph.D. in Materials and Chemical Engineering at National United University, Taiwan (2008–2014). During his doctoral studies, he was mentored by Prof. An-Chong Chao and co-advised by Dr. Guo-Chung Dong, focusing on biomaterials and nanomedicine.

Even as a student, Dr. Chiang demonstrated exceptional academic capabilities, earning scholarships and recognition for his innovative research. His academic training laid the groundwork for his future contributions in biomedical engineering and cancer therapeutics.

🧪 Professional Endeavors

Dr. Chiang has held several prestigious postdoctoral positions. His professional journey reflects a commitment to interdisciplinary collaboration and translational research:

  • Postdoctoral Fellow at the Biomedical Research Center of Southern China, Fujian Normal University (2019–Present), working under Prof. Qi Chen.

  • Postdoctoral Fellow at the Institute of Biological Chemistry, Academia Sinica, Taiwan (2016–2019), contributing to the Taiwan Protein Project (TPP) and the Technical Support Platform Spindle Project (TSPA).

  • Postdoctoral Fellow at the Clinical Trial Center, National Taiwan University Hospital (2015–2016), supported by Taiwan’s prestigious Biotech Elite Training Program.

Throughout these roles, Dr. Chiang has engaged in cutting-edge biomedical research with direct implications for drug development and clinical applications.

🔬 Contributions and Research Focus

Dr. Chiang’s research centers on innovative therapeutic materials and drug delivery systems, particularly in cancer therapy. His core interests include:

  • Antibody-Drug Conjugates (ADCs): Targeted cancer therapies such as HER2-positive and CD47-specific ADCs.

  • Functional Peptide Synthesis for bone tissue engineering and cancer inhibition.

  • Bio-Micro-Macro Molecular Materials for regenerative medicine.

  • Aptamer Development as modulators in therapeutic settings.

Notable publications include research on CD47-targeting ADCs (Frontiers in Oncology, 2022) and HER2-positive ADCs (PLOS ONE, 2020). His work on dexamethasone-immobilized chitosan scaffolds and chitosan-caffeic acid hybrids also provides valuable insights into localized drug delivery and tissue engineering.

🏆 Accolades and Recognition

Dr. Chiang’s dedication has been acknowledged through numerous awards:

  • 🥇 Science and Technology Commissioner, Quanzhou, Fujian Province (2020)

  • 🥇 Biotech Elite Training Award, National Taiwan University & Ministry of Science and Technology (2016)

  • 🥇 Chung Hwa Rotary Doctoral Program Award, Taiwan (2012)

  • 🥇 Outstanding Doctoral Scholarship, National United University (2010)

  • 🥇 Master’s Program Scholarship, Hunan Fellow Association of Taiwan (2007)

  • 🥇 Rotary Leadership Award, Miaoli Southeastern Xindong Satellite Rotary Club (2017)

These accolades affirm his position as a respected figure in the fields of biomedical chemistry and translational medicine.

🌍 Impact and Influence

Dr. Chiang’s work has made a geographic impact spanning Taiwan and Mainland China. His collaborative research in academia and clinical centers bridges the gap between laboratory research and therapeutic application. He actively contributes as a peer reviewer for the International Journal of Biological Macromolecules, influencing scientific standards and publication quality globally.

He is also engaged in community service through leadership in Rotary International, fostering science-driven community development and education.

🌟 Legacy and Future Contributions

Dr. Chiang’s legacy is being built on the foundation of scientific excellence, mentorship, and translational impact. His research not only pushes the boundaries of biomedical engineering but also aims to enhance the effectiveness of cancer treatments in clinical practice. With a commitment to developing next-generation targeted therapies and biomaterial scaffolds, Dr. Chiang is poised to shape the future of personalized medicine and regenerative technologies.

Looking ahead, he aims to establish interdisciplinary collaborations and contribute to global health initiatives, making life-saving therapies more effective and accessible.

Publication Top Notes

Development of Novel CD47-Specifific ADCs Possessing High Potency Against Non-Small Cell Lung Cancer in vitro and in vivo. 

Author: Z.C., Chiang, Zu Chian, S., Fang, Shubin, Y., Shen, Yangkun, J., Lin, Jizhen, Q., Chen, Qi

Journal: Frontiers in Oncology,

Year: 2022

Preparation and characterization of dexamethasone-immobilized chitosan scaffold

Author: Z.C., Chiang, Zu Chian, S., Yu, Shuhuei, A., Chao, Anchong, G.C., Dong, Guo Chung

Journal: Journal of Bioscience and Bioengineering, 

Year: 2012

 

Ojo Ayinuola | Lexicalization | Best Researcher Award | 12728

Dr Ojo Ayinuola | Lexicalization | Best Researcher Award

Dr Ojo Ayinuola, Ajayi Crowther University, Nigeria

Dr. Ojo Ayinuola, a lecturer at Ajayi Crowther University, Nigeria, is renowned for his impactful research in environmental science, parasitology, and biotechnology. His work on environmental pollutants, mosquito repellent activity, and phytoremediation has significantly contributed to community health and environmental sustainability.He is extensive and varied research portfolio, focus on practical and impactful solutions to community health and environmental issues, and collaborative efforts make him a strong candidate for the Research for Community Impact Award. His work not only advances scientific knowledge but also addresses real-world problems, benefiting communities both locally and globally.

 

Profile

Google Scholar

📚 Education

             PhD (English): 2015-2020

             Master of Arts English (Language): 2012-2014

             Bachelor of Arts (Ed) English: 2007-2009

             Nigeria Certificate Education (English/C.R.S): 2004-2006

             Senior Secondary School (SSCE): 1996-2002

             Primary School Leaving Certificate: 1990-1996

💼Professional Experience

  1. Tutorial Assistant (2014–Present): University of Ibadan (General Studies Programme)

2. Pathfinder College, Ibadan, Oyo State (2014–2015)

3. Faith College, Ore, Ondo State (2012–2013)

4. Government Day Sec. School, Kirfi, Bauchi State (NYSC) (2011–2012)

5. Excellency Group of Schools, Ore, Ondo State (2009–2011)

🔬 Research Contributions

     Diverse Research Topics: Dr. Ayinuola has made significant contributions to environmental science, parasitology, and biotechnology. His research on environmental pollutants, mosquito repellent activity, and phytoremediation directly addresses community health and environmental sustainability.

     Geographic Impact: His research impacts both Nigeria and India, demonstrating his ability to conduct region-specific research that addresses community issues in diverse locations.

     Collaborative Efforts: Dr. Ayinuola has co-authored numerous papers with other researchers, showcasing a collaborative approach essential for impactful, multi-disciplinary, and multi-institutional research.

     Applied Research: His studies have practical applications, such as using plant extracts as mosquito repellents, phytoremediation techniques for soil contamination, and natural products for antimicrobial activities. These applications are crucial for translating research into community benefits.

🏆Award and Honor

  1. Dr. Ayinuola’s publications in peer-reviewed journals indicate a high level of recognition in his field.

2. His body of work suggests that his research is both innovative and impactful, meeting the criteria for the Research for Community Impact Award.

Specific Projects and Publications

  • Environmental Health:
    • His work on assessing heavy metals in aquatic ecosystems (e.g., Clarias gariepinus in Nigeria) addresses significant public health concerns related to environmental contamination and its effects on food safety.
  • Vector Control:
    • Research on mosquito repellent activity and larvicidal properties of plant extracts contributes to controlling vector-borne diseases, critical for community health in tropical regions.
  • Waste Management and Water Quality:
    • Studies on the impact of solid waste dumping sites on groundwater quality and phytoremediation highlight essential issues related to waste management and water pollution.
  • Parasitology and Infectious Diseases:
    • Extensive work in parasitology, including studies on gastrointestinal parasites in children and parasitic nematodes in insects, directly contributes to understanding and managing parasitic infections in communities.

✍️ Publication Top Notes: Lexicalization

      Ayinuola, O. A. (2024): Lexicalisation of discourse strategies in the national anthems of selected African states. African Identities.

      Ayinuola, O. A. and M.O. Oshin (2023): Stylo-Narrative Readings of Wale Okediran’s After the Flood. Jos Journal of the English Language.

     Ayinuola, O. A. and Francis, V. I. (2022): Representation of Social Actors and Action of Rape Reportage in Selected Nigerian Newspapers. Ebonyi Journal of Language and Literary Studies.

     Ayinuola, O. A. and Abdullahi, A. S. (2021): Language Use and Ideology in Ibiwari Ikiriko’s Oily Tears of the Delta and Stephen Kekeghe’s Rumbling Sky. Issues in Language and Literary Studies.

     Ayinuola, O.A. (2021): Linguistic Construction of Ideational Meaning in National Anthems of Selected African States. Jos Journal of the English Language.

    Ayinuola, O. A. and Francis, V. I. (2021): Discourse Representation of Significant Others in Selected Nigerian Universities’ Slogans. Himalayan Journals.

    Ayinuola, O. A. (2021): National Anthem: its Origin and Typologies in the African Context. Academia Letters.

    Ayinuola, O. A. (2020): Lexicalisation of Ideology in National Anthems of Selected African States. Issues in Language and Literary Studies.

   Ayinuola, O. A. (2020): Discourse Structure of Titles of National Anthems in Selected African States. Paper in English and Linguistics.

   Ayinuola, O. A. (2019): Linguistic Representations of Postproverbial Expressions among Selected Yoruba speakers: A Socio-Cultural Interpretation. Matatu Journal for African Culture and Society.

   Alo, M.A. and Ayinuola, O. A. (2017): Lexical and Discursive Construction of National Identities in Selected English-Medium National Anthems of African States. The African Symposium.