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吕湘龙 博士

发布日期:2021-05-06 作者: 编辑:qinlin 审核人: 浏览次数:

 

 

吕湘龙,男,湖南永州人,博士。

教育与工作经历 

2004/09-2008/09,中南大学,欧洲杯买球完全官网,学士

2008/09-2016/01,中国科学院金属研究所,材料学专业,硕博连读,博士

2016/05-2020/11,华中科技大学,物理学院,博士后

研究方向

1)纳米多孔材料电化学催化

2)非晶金属薄膜的塑形变形机制

科研项目

1)中国博士后科学基金(61)2017M612455,双相多孔Ag-CuOx电极的CO2电催化选择性,2017/07-2019/6,主持

2)国家自然科学基金面上项目,51771078,纳米多孔Au-CuAu-Pd电催化选择性的动力学调控机理,2018/01-2021/12,在研,参与

3)国家自然科学基金面上项目,51371171,块体纳米孪晶Cu的疲劳性能与机理研究,2014/01-2017/12,已结题,参与

4)国家自然科学基金面上项目,51071153,块体纳米孪晶Cu显微结构与力学性能研究,2011/01-2013/12,已结题,参与

 

 

代表性研究成果

1. Lu, X. L; Yu, T. S; Wang, H. L; Qian, L. H*; Lei, P. X, Electrochemical fabrication and reactivation of nanoporous gold with abundant surface steps for CO2 reduction, ACS Catalysis 2020, 10, 8860-8869.

2. Lu, X. L; Yu, T. S; Wang, H. L; Qian, L. H*; Luo, R. C; Liu, P.; Yu, Y.; Liu, L.; Lei, P. X; Yuan, S. L, Nanoporous Au-Sn with solute strain for simultaneously enhanced selectivity and durability during electrochemical CO2 reduction. Journal of Materials Science &Technology, 2020, 43, 154-160.

3. Lu, X. L; Li, Y*; Lu, L*, Co-existence of homogeneous flow and localized plastic deformation in tension of amorphous Ni–P films on ductile substrate. Acta Mater. 2016, 106, 182-192.

4. Lu, X. L; Yu, T. S; Wang, H. L; Luo, R. C; Liu, P.; Yuan, S. L; Qian, L. H*, Self-supported nanoporous gold with gradient tin oxide for sustainable and efficient hydrogen evolution in neutral media. Journal of Renewable Materials 2020, 8, 133-151.

5. Lu, X. L; Lu, Q. H; Li, Y*; Lu, L*, Gradient confinement induced uniform tensile ductility in metallic glass. Scientific Reports 2013, 3.

6. Zhou, X. J; Lu, X.; Yu, T. S; Wang, H. L; Qian, L. H*; Lei, P. X; Yu, Y.; Liu, L.; Xia, S. G; Fang, J. K, Conformal Shell Amorphization of Nanoporous Ag-Bi for Efficient Formate Generation. ACS Appl. Mater. Interfaces 2020, 12, 31319-31326.

7. Zhang, C.; Xiao, J.; Lv, X. L; Qian, L. H*; Yuan, S. L; Wang, S.*; Lei, P. X*, Hierarchically porous Co3O4/C nanowire arrays derived from a metal-organic framework for high performance supercapacitors and the oxygen evolution reaction. J. Mater. Chem. A 2016, 4, 16516-16523.

8. Barasa, G. O.; Yu, T. S; Lu, X. L; Zhou, X. J; Wang, H. L; Qian, L. H*; Yu, Y.; Liu, L.; Lei, P. X, Electrochemical training of nanoporous Cu-In catalysts for efficient CO2-to-CO conversion and high durability. Electrochim. Acta 2019, 295, 584-590.

9. Wu, K.; Li, Z.; Tang, J.; Lv, X.; Wang, H.; Luo, R.; Liu, P.; Qian, L.*; Zhang, S.*; Yuan, S., Controllable defects implantation in MoS2 grown by chemical vapor deposition for photoluminescence enhancement. Nano Research 2018, 11, 4123-4132.

10. Yang, W.; Qian, L.*; Lei, P.; Chen, J.; Lu, X.; Yu, T.; Xiao, H.; Zhou, X.; Kathale, B., Active and selective CO2 electroreduction on a hierarchically nanoporous Au-Ag shell. Chem. Phys. Lett. 2020, 753, 137563.

11. Yang, W.; Wu, K.; Yang, W.; Wang, H.; Lv, X.; Qian, L.*; Yu, T.; Li, Z.; Zhou, X.; Barasa, G. O.; Yuan, S.; Jiang, Y.; Yang, Z., Nanoporous Au-Ag shell with fast kinetics: integrating chemical and plasmonic catalysis. Nanotechnology 2017, 28, 425704.

12. Wang, G.; Jiao, W.; Yi, L.; Zhang, Y.; Wu, K.; Zhang, C.; Lv, X.; Qian, L.*; Li, J.; Yuan, S.; Chen, L., Topography-specific isotropic tunneling in nanoparticle monolayer with sub-nm scale crevices. Nanotechnology 2016, 27, 405701.

 

联系方式

通信地址:广西桂林市建干路12

E-mailxllv@glut.edu.cn

 

 

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