Davut Uzun | Chemistry | Best Research Article Award

Assoc Prof Dr. Davut Uzun | Chemistry | Best Research Article Award 

Assoc Prof Dr. Davut Uzun | Marmara University | Turkey

Assoc. Prof. Dr. Davut Uzun, an accomplished independent researcher affiliated with Marmara University, Turkey, has over two decades of expertise in material synthesis, electrochemical characterization, and battery technologies. He has led more than 12 projects, including pioneering work in lithium-ion battery infrastructure development, enabling pilot-scale production up to 60 Ah. With an h-index of 11, over 300 citations, a published book, and multiple high-impact journal articles, Dr. Uzun’s research has significantly advanced capacitor and battery applications. His innovative contributions bridge academic research and industry needs, positioning him as a leading figure in sustainable energy storage solutions.

Author Profile

Scopus | Google Scholar

Education

Assoc. Prof. Dr. Davut Uzun’s academic journey began at Marmara University, where he graduated from the Department of Chemistry. His deep interest in material science, electrochemistry, and energy storage systems shaped his early research path. From his undergraduate years, Dr. Uzun demonstrated exceptional analytical skills and a talent for experimental research. His dedication to understanding the complex interactions in electrochemical systems led him to pursue studies that bridged fundamental chemistry with applied energy technologies. This strong academic foundation prepared him for a career that would significantly influence battery and capacitor development in Türkiye and beyond.

Experience

Following his graduation, Dr. Uzun joined the TÜBİTAK Marmara Research Center, where he quickly progressed to leading critical projects in battery technology. Between 2009 and 2013, he spearheaded the design and establishment of Türkiye’s lithium-ion battery R&D infrastructure, enabling pilot-scale production of batteries up to 60 Ah capacity. He has led over 12 major research projects in material synthesis, electrode design, and electrochemical characterization, collaborating with both public institutions and private industry partners. Since 2019, Dr. Uzun has continued as an independent researcher at Marmara University, focusing on cutting-edge solutions for energy storage. His work is distinguished by its practical application potential, ensuring that laboratory innovations translate into market-ready technologies.

Research Focus

Dr. Uzun’s research spans material synthesis, electrochemical characterization, and electrode/cell production for capacitors and batteries. His expertise covers lithium-ion, sodium-ion, and supercapacitor technologies, with particular attention to transition metal hydroxides, sulfides, and doped oxide materials. His current project at Marmara University investigates carbon quantum dot-embedded reduced graphene oxide composites for high-performance electrochemical capacitors.
He has published extensively in high-impact journals indexed in SCI and Scopus, authored a key reference book “Lithium-Ion Batteries and Applications” (ISBN: 978-625-406-870-6), and contributed to industrial innovations through five industry-sponsored projects. Dr. Uzun’s 14 indexed research articles, with an h-index of 11 and over 300 citations, highlight his sustained contribution to advancing energy storage materials and systems.

Award and Recognition

While Dr. Uzun’s focus has primarily been on delivering impactful research rather than seeking awards, his scientific influence is evident in peer recognition, industry collaborations, and invitations to participate in high-profile projects. His infrastructure development work at TÜBİTAK remains a cornerstone for Türkiye’s battery research ecosystem, still actively used for material synthesis, battery design, and international-standard testing. His publications have been widely cited, reflecting the global relevance of his work. Furthermore, his latest article in Electrochemistry Communications (DOI: 10.1016/j.elecom.2025.108024) positions him as a front-runner in supercapacitor electrode development.

Impact and Influence

Dr. Uzun’s career reflects a seamless integration of academic research with industrial applications, driving advancements that extend well beyond the laboratory. He has played a pivotal role in supporting domestic battery manufacturing capabilities in Türkiye, advancing cost-effective and scalable production methods for energy storage, and facilitating the transfer of innovative technologies from research labs to industry. Through mentorship and collaboration, he has influenced and inspired a new generation of researchers and engineers. By combining expertise in materials chemistry, electrochemical engineering, and industrial design principles, Dr. Uzun has not only fostered laboratory innovation but also enhanced market competitiveness in battery technologies. His pioneering work on sodium-ion and lithium-ion cathode materials offers promising alternatives to current commercial solutions, with far-reaching environmental and economic benefits on a global scale.

Publications

The potential use of sweet sorghum as a non-polluting source of energy.

Author: Semra Türe , Davut Uzun , I.Engin Türe
Journal: Energy
Year: 1997

Boron-doped Li1. 2Mn0. 6Ni0. 2O2 as a cathode active material for lithium ion battery.

Author: SDavut Uzun
Journal: Solid State Ionics
Year: 2015

Effect of MnO2 coating on layered Li (Li0. 1Ni0. 3Mn0. 5Fe0. 1) O2 cathode material for Li-ion batteries.

Author: Davut Uzun, Mehbare Doğrusöz, Muhsin Mazman, Emre Biçer, Ercan Avci, Tansel Şener , Tevhit Cem Kaypmaz, Rezan Demir-Cakan
Journal: Solid State Ionics
Year: 2013

High performance LiFePO4/CN cathode material promoted by polyaniline as carbon–nitrogen precursor.

Author: Ercan Avci , Muhsin Mazman , Davut Uzun , Emre Biçer , Tansel Şener
Journal: Power Sources
Year: 2013

Conclusion

Assoc. Prof. Dr. Davut Uzun stands as a distinguished figure in the field of energy storage, whose dedication to material innovation, electrochemical advancement, and industrial application has significantly strengthened Türkiye’s position in battery technology research and development. His pioneering contributions—from establishing national R&D infrastructure to developing next-generation electrode materials—demonstrate a rare blend of scientific excellence and practical impact. With a career defined by innovation, mentorship, and cross-sector collaboration, Dr. Uzun continues to shape the future of sustainable energy solutions, inspiring both peers and emerging researchers worldwide. His work not only addresses current technological challenges but also lays the foundation for cleaner, more efficient, and globally competitive energy systems.

 

Linzhe Wang | Environmental Science | Best Researcher Award

Mr. Linzhe Wang | Environmental Science | Best Researcher Award

Postgraduate at Beijing Information Science & Technology University, China.

Linzhe Wang is a dedicated researcher currently pursuing a master’s degree in electronic information engineering at Beijing Information Science & Technology University. His research interests primarily focus on developing paper-based microfluidic chips for water quality detection and microsensors for detecting heavy metals in water. Linzhe possesses a diverse set of research skills, including experimental design, data analysis, instrumentation, literature review, problem-solving, and collaboration. These skills enable him to conduct rigorous scientific investigations, interpret complex datasets, and contribute meaningfully to advancements in his field. Linzhe’s commitment to addressing critical environmental challenges underscores his potential to make significant contributions to the field of water quality monitoring and management.

Professional Profiles:

Education:

Linzhe Wang completed his bachelor’s degree in automation from Henan University, Kaifeng, Henan, China. Currently, Linzhe is pursuing a master’s degree in electronic information engineering at Beijing Information Science & Technology University, Beijing, China. His academic journey showcases a strong foundation in engineering, particularly in the fields of automation and electronic information engineering.

Research Interest

Linzhe Wang’s research interests encompass two key areas: paper-based microfluidic chips for water quality detection and microsensors for detecting heavy metals in water. In the realm of paper-based microfluidic chips, Linzhe is engaged in the development of innovative platforms aimed at accurately assessing water quality parameters. This pursuit likely involves exploring novel fabrication techniques and integrating advanced sensing technologies into paper-based systems. Additionally, Linzhe is committed to advancing the field of microsensor technology, particularly in the realm of heavy metal detection in water. His research involves designing and optimizing sensitive and selective sensor platforms capable of detecting specific heavy metal contaminants, such as cadmium, lead, and mercury. Linzhe’s work underscores his dedication to addressing critical environmental challenges and advancing the field of water quality monitoring and management.

Research Skills

Linzhe Wang’s research skills are multifaceted and tailored to his field of study. He excels in experimental design, adept at crafting controlled experiments and protocols to ensure reliable outcomes. With a keen grasp of statistical methods and data analysis tools, Linzhe interprets complex datasets with precision, extracting meaningful insights to drive his research forward. Linzhe is well-versed in instrumentation, confidently operating an array of laboratory equipment crucial for his experiments. His meticulous literature reviews contextualize his work within existing scholarship, guiding the trajectory of his research endeavors. Linzhe’s problem-solving prowess enables him to navigate challenges seamlessly, refining methodologies and optimizing protocols. Additionally, his collaborative spirit fosters synergistic teamwork, enhancing innovation and propelling scientific progress. Linzhe Wang’s comprehensive research skills empower him to undertake rigorous investigations, contribute significant findings, and advance knowledge in his field.

Publications

  1. An Electrochemical Sensor Based on Three-Dimensional Porous Reduced Graphene and Ion Imprinted Polymer for Trace Cadmium Determination in Water
    • Authors: Wang, L., Hu, J., Wei, W., Gao, G., Qin, L.
    • Year: 2023
    • Publication: Sensors, 23(23), 9561
  2. Ion Imprinted Polymers Integrated into a Multi-Functional Microfluidic Paper-Based Analytical Device for Trace Cadmium Detection in Water
    • Authors: Hu, J., Wang, L., Song, Y., Wu, J., Mulchandani, A.
    • Year: 2023
    • Publication: Analytical Methods, 16(2), pp. 179–188