Yao Li | Quantum Field Theory | Best Researcher Award

Assoc Prof Dr. Yao Li | Quantum Field Theory | Best Researcher Award

Associate professor at School of Electronic and Information Engineering, Lanzhou Jiaotong University, China

Dr. Yao Li is an Associate Professor at the School of Electronic and Information Engineering at Lanzhou Jiaotong University. He earned his Ph.D. in Engineering from Lanzhou University, specializing in Microelectronics and Solid-State Electronics. Dr. Li has a profound commitment to advancing research in semiconductor devices, contributing significantly to the field through both innovative research projects and high-quality publications. He has garnered recognition for his scholarly efforts, particularly within Gansu Province. His dedication to fostering young talent in academia is evident from his involvement in various educational initiatives and programs.

 🎓Profile:

Education:

Dr. Yao Li obtained his Bachelor’s and Master’s degrees in Electronics Engineering from Lanzhou University, where he developed a strong foundation in electronic systems. He further pursued a Ph.D. in Engineering, specializing in Microelectronics and Solid-State Electronics. His doctoral research focused on advancing semiconductor technologies, which has laid the groundwork for his subsequent academic and research pursuits. Dr. Li’s education has equipped him with the necessary theoretical knowledge and practical skills to excel in the dynamic field of electronics. His academic journey reflects a commitment to continuous learning and innovation, contributing to his standing as a respected figure in the academic community.

Professional Experience:

Dr. Yao Li has amassed significant experience in academia and research. As an Associate Professor at the School of Electronic and Information Engineering at Lanzhou Jiaotong University, he teaches various courses related to electronics and semiconductor technology. Dr. Li has successfully led multiple key research projects, including those funded by the National Natural Science Foundation of China and the Gansu Province Youth Science and Technology Fund. His involvement in these projects has enhanced innovation capacity within higher education institutions and fostered talent development. Additionally, Dr. Li has contributed to various scholarly publications, demonstrating his expertise in the field. He serves as a Young Editor for Semiconductor Optoelectronics, further reflecting his active engagement in the academic community. His role in both teaching and research illustrates his dual commitment to educating the next generation of engineers while advancing the frontiers of semiconductor technology.

Research Focus:

Dr. Yao Li’s primary research focus lies in the realm of semiconductor devices and solid-state electronics. His investigations explore the innovative applications of microelectronics in various sectors, contributing to advancements in technology and enhancing electronic performance. Through leading and participating in projects funded by national and provincial programs, he aims to push the boundaries of semiconductor research. Dr. Li’s work encompasses both theoretical and practical aspects, fostering a comprehensive understanding of material properties and device functionalities. His publications in reputable journals such as IEEE Transactions on Electron Devices and Organic Electronics demonstrate his commitment to disseminating knowledge and findings in the field.

Awards and Honors:

Dr. Yao Li has been recognized for his outstanding contributions to the field of electronics and engineering through several prestigious awards. Notably, he received the Third Prize in the Gansu Province Science and Technology Progress Award, highlighting his impactful research efforts. In 2019, he was selected for the Lanzhou Jiaotong University Tianyou Young Talent Program, underscoring his potential and contributions to the academic community. Most recently, in 2023, Dr. Li was honored as a Young Research Star at Lanzhou Jiaotong University, reflecting his significant achievements and commitment to advancing knowledge in microelectronics. These accolades not only affirm his dedication to research and innovation but also position him as a rising star in the academic landscape. Dr. Li’s recognition serves as an inspiration to his peers and students, motivating them to pursue excellence in their respective fields.

 📚Publication Top Notes:

Title: Influence of AZO buffer layer on characteristics of ZnO film on glass substrates for Schottky UV photodetector applications
  • Authors: Zhang, C., Hu, T., Wang, Z., Li, Y.
  • Publication Year: 2024
  • Citations: 1
Title: Research progress on giant magnetoresistive sensors based on spin-valve structure
  • Authors: Li, Y., Liu, L., Wu, H., Lu, Q.
  • Publication Year: 2024
  • Citations: 0
Title: A High-Performance InGaAs Vertical Electron–Hole Bilayer Tunnel Field Effect Transistor with P+-Pocket and InAlAs-Block
  • Authors: Liu, H., Li, P., Zhou, X., Zhang, W., Li, Y.
  • Publication Year: 2023
  • Citations: 2
Title: Secondary electron emission of B-doped/undoped double-layer heteroepitaxial single crystal diamond film
  • Authors: Wei, K., Wu, S., Zhao, H., Wu, R., Wu, X.
  • Publication Year: 2023
  • Citations: 0

 

Min Yang | High Energy physics | Best Researcher Award

Prof. Min Yang | High Energy physics | Best Researcher Award

PHD at Qingdao University of Technology, Qingdao, China

Dr. Min Yang, based at Qingdao University of Technology, Qingdao, China, is a distinguished researcher recognized as a Highly Cited Researcher for Clarivate in 2022 and listed among the World’s Top 2% Scientists in 2023. With an H-index of 45, she has authored 83 influential papers, including 39 ESI HOT/Highly Cited papers, accumulating 8205 WOS citations. As the chief expert of the Qingdao Nanolubricant Quasi Dry Manufacturing Expert Workstation, her expertise spans grinding, precision machining, biomedical material processing, and the preparation of wearable sensors. Additionally, she has authored 4 books, contributing significantly to her field. High Energy physics

Professional Profiles:

Scopus

Researchgate

Education

phd, Qingdao University of Technology, Qingdao, China

Accolades

Min Yang is a Highly Cited Researcher for Clarivate in 2022 and recognized as one of the World’s Top 2% Scientists in 2023. She has made significant contributions, with 83 highly influential papers to her name, including 39 ESI HOT/Highly Cited papers. Her impressive H-index of 45 reflects the impact of her work, which has garnered a total of 8205 WOS citations. High Energy physics

Expertise

Her expertise extends to serving as the chief expert of the Qingdao Nanolubricant Quasi Dry Manufacturing Expert Workstation.

Publications

In addition to her prolific paper output, Min Yang has authored 4 books, 2 of which were published by Science Press.

Research Interest

Grinding and precision machining, Biomedical material processing, Preparation of wearable sensors

Research Focus:

Dr. Min Yang’s research focuses on various aspects of advanced manufacturing technology, particularly in the field of grinding and precision machining. Her recent work includes investigations into the grindability evaluation of ultrasonic-assisted grinding of silicon nitride ceramic using minimum quantity lubrication based SiO2 nanofluid. Additionally, she has contributed significantly to understanding material removal mechanisms and force modeling in ultrasonic vibration-assisted micro-grinding of biological bone. Dr. Yang’s expertise extends to exploring heat transfer mechanisms in cryogenic air minimum quantity lubrication grinding of titanium alloy and developing temperature field models in surface grinding. She continues to advance knowledge in these areas through her research at Qingdao University of Technology, Qingdao, China. High Energy physics

Publications

  1. Temperature field model in surface grinding: a comparative assessment, Publication: 2023.
  2. Material Removal Mechanism and Force Modeling in Ultrasonic Vibration-Assisted Micro-Grinding Biological Bone, Publication: 2023.
  3. Convective Heat Transfer Coefficient Model Under Nanofluid Minimum Quantity Lubrication Coupled with Cryogenic Air Grinding Ti–6Al–4V, Publication: 2020.
  4. Nanobiolubricant grinding: a comprehensive review, Publication: 2024.
  5. Kinematics and improved surface roughness model in milling, Publication: 2022.
  6. Graphene-based flexible wearable sensors: mechanisms, challenges, and future directions, Publication: 2023.
  7. Grindability Evaluation of Ultrasonic Assisted Grinding of Silicon Nitride Ceramic Using Minimum Quantity Lubrication Based SiO2 Nanofluid, Publication: 2024.
  8. Magnetic Bearing: Structure, Model and Control strategy, Publication: 2023.
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