Luzhao Sun | Nano Materials | Young Scientist Award

Prof. Luzhao Sun | Nano Materials | Young Scientist Award 

Prof at Beijing Graphene Institute, China. 

Luzhao Sun is an Assistant to Director, Chief Equipment Engineer, and Group Leader at the Beijing Graphene Institute (BGI). With expertise in graphene and 2D materials, his research focuses on developing scalable manufacturing equipment and techniques for high-quality graphene production. Dr. Sun has published over 50 papers in top-tier journals and holds 20+ authorized invention patents.

Professional Profile

Scopus

Education🎓

– Ph.D. in Physical Chemistry, Peking University (2015-2020) – Supervisors: Academician Zhongfan Liu & Prof. Hailin Peng- B.Eng. in Optoelectronic Information Science, University of Electronic Science and Technology of China (2011-2015)

Experience 💼

– *Assistant to Director, Chief Equipment Engineer & Group Leader*, Beijing Graphene Institute (BGI) (2021-Present) – Leading research and development of graphene manufacturing equipment and techniques- *Youth Editorial Board Member*, Materials Today Electronics (2022-Present)- *Guest Editorial Board Member*, Science Bulletin (2022-Present)

Research Interests🔍

Dr. Luzhao Sun’s research focuses on:- Graphene and 2D materials synthesis and applications- Scalable manufacturing equipment and techniques- Layer-controlled and orientation-controlled epitaxial growth of graphene

Awards🏆

– *IAAM Young Scientist Award* (2022)- *Outstanding Graduate of Beijing* (2020)- *Director’s Award, BGI* (2019)

Top Noted Publications📄

1. Chemical vapour deposition 📚
2. Edge-feeding synchronous epitaxy of layer-controlled graphene films on heterogeneous catalytic substrates 🔍
3. Hetero-site nucleation for growing twisted bilayer graphene with a rich range of twist angle 🌟
4. Slip-Line-Guided Growth of Graphene 🌿
5. Rationalized electroepitaxy toward scalable single-crystal Zn anodes

Assoc. Prof. Dr Kai-Ming Hu | Surface Mechanics | Best Researcher Award

Assoc. Prof. Dr Kai-Ming Hu | Surface Mechanics | Best Researcher Award

Center director at Shanghai Jiao Tong University/School of Mechanical Engineering , China

Dr. K. M. Hu is an Associate Professor at Shanghai Jiao Tong University, China. With expertise in mechanical engineering and materials science, Dr. Hu has made significant contributions to the development of mechanical self-assembly-induced soft lithography technology and its applications. His research focuses on surface micro/nano-patterning, MEMS/NEMS, and nanotechnology 🔍.

Profile

scholar

🎓 Education

– *Joint PhD in Mechanical Engineering*: University of California, Berkeley (UCB) and Shanghai Jiao Tong University (SJTU), 2015-2017 🎓– *PhD in Mechanical Engineering*: Shanghai Jiao Tong University (SJTU), 2011-2017 📚– *Bachelor in Mechanical Engineering and Automation*: Central South University (CSU), 2007-2011 📘

👨‍🔬 Experience

– *Associate Professor*: Shanghai Jiao Tong University, 2021-Current 🏫– *Post-doctoral Researcher*: Shanghai Jiao Tong University, 2017-2021 🔬– *Joint PhD Researcher*: University of California, Berkeley (UCB), 2015-2017 🔍

🔍 Research Interest

– *Mechanical Self-Assembly-Induced Soft Lithography Technology*: development of novel methods for surface micro/nano-patterning 🔍– *Surface Micro/Nano-Patterning*: applications in MEMS/NEMS, nanotechnology, and materials science 💻– *MEMS/NEMS*: design, fabrication, and characterization of micro/nano-devices 🤖

Awards and Honors 🏆

– *Mechanical Self-Assembly-Induced Soft Lithography Technology*: development of novel methods for surface micro/nano-patterning 🔍– *Surface Micro/Nano-Patterning*: applications in MEMS/NEMS, nanotechnology, and materials science 💻– *MEMS/NEMS*: design, fabrication, and characterization of micro/nano-devices 🤖

📚 Publications 

– Deterministically self-assembled 2D materials and electronics 📚
– Photo-induced stress relaxation in reconfigurable disulfide-crosslinked supramolecular films visualized by dynamic wrinkling 🔍
– Dynamic Optical Encryption Fueled via Tunable Mechanical Composite Micrograting Systems 🔒
– Photochemical Design for Diverse Controllable Patterns in Self-Wrinkling Films 🎨
– Reversible surface patterning by dynamic crosslink gradients: controlling buckling in 2D 🔝
– Deformation-Induced Photo-programmable Pattern of Polyurethane Elastomers Based on Poisson Effect 🤖
– Hierarchical 3D Patterns with Dynamic Wrinkles Produced by a Photo-controlled Diels-Alder Reaction on the Surface 🌈
– Delamination-Free Functional Graphene Surface by Multiscale, Conformal Wrinkling 💡
– Vision-based tactile sensing: From performance parameters to device design 🔍
– Regulating surface wrinkles using light

Conclusion

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