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高金铃

发布时间:2023-12-20浏览次数:

 

联系方式

箱:jinlingGao@jlu.edu.cn

办公室:吉林大学超硬综合楼A412

研究方向:超硬多功能纳米材料

实验室:吉林大学超硬综合楼

个人简历

研究经历

2023.09-至今,吉林大学,超硬材料国家重点实验室,博士后

教育经历

2018.09-2023.06,吉林大学,超硬材料国家重点实验室,博士

2013.09-2017.06,长春理工大学,材料科学与工程学院,学士

研究兴趣

超硬多功能纳米材料合成、性质调控与应用研究

代表性论文

1. Gao J., Zhan W., Xiao Y., Zhu X., Gao W. and Yin H. *. Surface plasmonic coupling of Au nanoparticle arrays with ultrathin hexagonal boron nitride nanosheets for Raman enhancement. The Journal of chemical physics 158 (2023): 214704.

2. Gao J., Chen L., Wang H., Wu Y., Zhu X., Xiao Y., Gao W., and Yin H.*. Membranes based on porous hexagonal boron nitride nanorods for ultrafast and effective molecular separation. Journal of Membrane Science 647 (2022): 120307.

3. Zhan W., Gao J., Li X., Wang H., Gao W. and Yin H. *. High-efficient OER/ORR bifunctional electrocatalysts based on hexagonal boron nitride enabled by co-doping of transition metal and carbon. Applied Physics Letters 123 (2023): 073901.

4. Sun X., Gao J., Wang C., Gao X., Liu J., Gao N., Li H.*, Wang Y., and Yu K.. A hybrid ZnO/Si/porous-carbon anode for high performance lithium ion battery. Chemical Engineering Journal 383 (2020): 123198.

5. Zhan W., Wang H., Gao J., Tang X., Zhu X., Xiao Y., Sun X., Gao W. and Yin H. *. Hexagonal Boron Nitride/Reduced Graphene Oxide Heterostructures as Promising Metal-Free Electrocatalysts for Oxygen Evolution Reaction Driven by Boron Radicals. Small Structures (2023): 2300167.