Xi Yuan | Nanotechnology | Research Excellence Award

Prof. Xi Yuan | Nanotechnology | Research Excellence Award 

Jilin Normal University | China

Prof. Xi Yuan is a distinguished researcher and academician currently serving as a Professor at Jilin Normal University, China. He earned his Ph.D. from the University of Chinese Academy of Sciences, building upon a solid undergraduate foundation at Jilin University. Over the course of his academic career, Prof. Yuan has established himself as a leading expert in the field of luminescent nanomaterials, a rapidly advancing area at the intersection of materials science, nanotechnology, and photonics. His work has significantly contributed to the understanding and development of nano-luminescent materials, which have applications across energy, optoelectronics, sensing, and bioimaging technologies. Prof. Yuan has an impressive track record of research and scholarly output. He has published 39 high-impact articles in prestigious SCI-indexed journals, demonstrating his consistent contributions to the advancement of knowledge in his field. His research excellence is further evidenced by his role as the lead principal investigator on a grant awarded by the China National Natural Science Foundation (NSFC), highlighting his ability to secure competitive funding for cutting-edge projects. In addition to his academic publications, Prof. Yuan has been involved in consultancy and industry projects related to luminescent nanomaterials, bridging the gap between theoretical research and practical applications. Throughout his career, Prof. Yuan has actively participated in collaborations with other researchers and institutions, fostering interdisciplinary partnerships that enhance the scope and impact of his work. He maintains a strong professional presence through his editorial appointments and memberships in relevant scientific societies, reflecting his commitment to the broader research community. Prof. Yuan’s contributions have not only advanced fundamental research but have also provided valuable technological insights for industrial applications, making him a role model for emerging scientists in the field. He is recognized for his meticulous approach to research, innovative thinking, and dedication to mentoring the next generation of scientists. Prof. Yuan’s academic and professional achievements, combined with his extensive experience in luminescent nanomaterials, make him an outstanding candidate for the Research Excellence Award. Through his sustained contributions, he has significantly impacted both the scientific community and society by advancing knowledge, fostering innovation, and promoting the application of nanomaterials to real-world challenges. His work exemplifies the highest standards of scientific rigor, creativity, and societal relevance, positioning him as a leading figure in contemporary materials research.

Profile: Orcid

Featured Publications

Ji, S., Zhao, L., Chen, C., Zhao, J., Wang, J., Zheng, J., & Yuan, X. (2025, November). A/B-site synergistic engineering in nanoscale quasi-two-dimensional perovskites: Bimetallic Cs⁺/Cd²⁺ co-doping for enhanced luminescence and phase stability of BA₂MAn-1PbnBr3n+1 films. Journal of Alloys and Compounds. https://doi.org/10.1016/j.jallcom.2025.184887

Qian, Z., Wu, X., Xia, L., Wang, J., Zhao, J., & Yuan, X., Bao, X. (2025, November). Achieving long-lived multicolor room-temperature phosphorescence in silicon nanodots through Zn²⁺ doping for anti-counterfeiting and multiple-level information encryption. Journal of Luminescence. https://doi.org/10.1016/j.jlumin.2025.121678

Bao, X., Zhu, X., Tian, Z., Wang, H., Li, H., & Yuan, X. (2025, July). Dual-mode thermochromic afterglow in phosphorus-doped carbon dot composites for visible light-activated information encryption. Journal of Colloid and Interface Science. https://doi.org/10.1016/j.jcis.2025.137331

Zhao, K., Ji, S., Zhao, L., Qian, Z., Wu, X., Xia, L., Gao, Y., Zhao, J., & Yuan, X. (2025, July). Enhanced near-infrared emission and stability of Yb-doped CsPbCl₃ nanocrystals via amine ligand regulation for phosphor-converted light-emitting diodes. Journal of Alloys and Compounds. https://doi.org/10.1016/j.jallcom.2025.181832

Li, J., Xia, L., Liu, Y., Gu, Z., Liang, H., Wu, X., Qian, Z., Ji, S., Zhao, J., & Yuan, X. (2025, June). Optimizing luminescence performance of alloyed CsPb₁−xCdxBr₃ perovskite nanocrystals for blue light-emitting diodes. Materials Research Bulletin. https://doi.org/10.1016/j.materresbull.2025.113355

Zhu, X., Tian, Z., Wang, H., Wang, X., Zhang, Y., Wang, Y., Li, H., Bao, X., & Yuan, X. (2025, May 23). Visible light-activated dual-mode afterglow emission in chlorine-doped carbon dot-based composite for advanced information encryption. ACS Applied Nano Materials. https://doi.org/10.1021/acsanm.5c00279

Bo Zhu | Nanotechnology | Best Researcher Award | 13430

Dr. Bo Zhu | Nanotechnology | Best Researcher Award

Dr. Bo Zhu, Jilin University, China

Dr. Bo Zhu is a Lecturer at the School of Mechanical and Aerospace Engineering, Jilin University, China. He received his Ph.D. from Jilin University in 2020 and conducted part of his doctoral research as a visiting scholar at the University of Toronto. His research focuses on high-entropy alloys, nanoindentation, and molecular dynamics simulations. Dr. Zhu has led and contributed to several national and provincial research projects and has published extensively in high-impact journals such as Materials & Design and Advanced Engineering Materials.

Profile

scopus

🎓 Early Academic Pursuits

Dr. Bo Zhu began his academic journey in the field of mechanical and aerospace engineering at Jilin University, one of China’s most prestigious research institutions. Enrolling in 2010, he completed his Bachelor of Engineering in 2014, laying a solid foundation in materials science, mechanics, and computational modeling. Driven by a passion for scientific inquiry and advanced materials, he continued at Jilin University for his Ph.D. studies from 2014 to 2020.A defining moment in his academic career was his tenure as a Visiting Ph.D. Scholar at the University of Toronto between 2019 and 2020. There, he joined the Department of Materials Science and Engineering, gaining international exposure and collaborating with globally recognized experts. This experience expanded his academic perspective and enabled him to explore advanced materials processing techniques, particularly focusing on high-entropy alloys (HEAs) and nanoindentation techniques using molecular dynamics simulations.

👨‍🏫 Professional Endeavors

Following the completion of his Ph.D., Dr. Zhu commenced his professional academic career as a Postdoctoral Researcher at the School of Mechanical and Aerospace Engineering, Jilin University, in July 2021. During this period, he was deeply involved in both teaching and research, contributing to the university’s academic excellence and mentoring graduate students. In February 2025, he was appointed as a Lecturer, a role that reflects his growing reputation in the field and his dedication to academic growth. As a faculty member, Dr. Zhu is committed to advancing both undergraduate and graduate education, fostering innovation, and building collaborative research environments.

🔬 Contributions and Research Focus

Dr. Zhu’s research is primarily centered around advanced materials—particularly high-entropy alloys (HEAs) and silicon carbide (SiC) materials—and their behavior under mechanical stress and extreme conditions. Utilizing computational techniques such as molecular dynamics (MD) simulations, he investigates the atomic-level deformation behavior, anisotropy effects, and phase transformations in materials.

Some of his notable publications include:

  • A study on short-range ordering and atomic segregation in HEAs during solidification (Materials & Design, 2023).

  • Research on the anisotropy effects of 3C–SiC under nanoindentation (Journal of Materials Research and Technology, 2024).

  • Contributions to the development of a high-throughput synthesis method for HEAs using inductively coupled plasma (Advanced Engineering Materials, 2021).

These works have significantly advanced the understanding of mechanical properties at the nanoscale and informed material design strategies for high-performance applications.

🏅 Accolades and Recognition

Dr. Zhu has played a key role in several prestigious national and provincial research projects, including:

  1. National Natural Science Foundation of China (Grant No. 52205156)

  2. National Major Scientific Instruments and Equipment Development Project (Grant No. 52227810)

  3. Postdoctoral Merit Funding Project of Jilin Province

  4. Special Scientific Research Project by the Jilin Provincial Department of Education

His consistent record of funding and support underscores his scientific credibility and the practical relevance of his research. These competitive grants not only validate his academic vision but also enable him to push the boundaries of material science research.

🌍 Impact and Influence

Dr. Zhu’s work is already making a tangible impact in the fields of nanomechanics, semiconductor materials, and alloy design. His publications are widely cited by fellow researchers and have contributed to foundational knowledge in high-entropy material systems and simulation-based mechanical testing. His interdisciplinary approach—bridging computational modeling with experimental data—has positioned him as a thought leader in atomistic simulations and materials design. Additionally, by actively participating in international collaborations and academic exchanges, he promotes global scientific dialogue and contributes to the worldwide research ecosystem.

🌟 Legacy and Future Contributions

As Dr. Zhu moves forward in his academic career, his goals include expanding his research group, mentoring emerging scientists, and deepening his exploration of AI-driven materials discovery and multi-scale simulations. He also aims to contribute to green technologies and sustainable materials, aligning with global efforts to tackle climate change and resource efficiency. Dr. Zhu envisions a legacy where high-performance materials engineered through advanced simulations contribute to real-world solutions—from aerospace components to energy-efficient electronics. His long-term commitment to both education and research ensures he will continue to be a pillar in the field of materials science.

Publication  Top Notes

Research on the effects of chemical short-range order on strengthening and toughening mechanisms of FCC/BCC dual-phase high-entropy alloys at micro/nano-scale

Author: Y., Niu, Yihan, D., Zhao, Dan, B., Zhu, Bo, Z., Zhang, Zhijie, H., Zhao, Hongwei

Journal: Materials Today Communications This link is disabled

Year: 2024

Effect of temperature on the nanoindentation behavior of monocrystalline silicon by molecular dynamics simulations

Author: Z., Zhang, Zhijie, Z., Zhang, Zhenqiao, D., Zhao, Dan, B., Zhu, Bo, H., Zhao, Hongwei

Journal: Materials Today Communications This link is disabled

Year: 2024