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高敏锐
单位:微尺度国家研究中心
地址:合肥市中国科学技术大学东区理化大楼5011
邮编:230026
电话:86-551-63606059
个人主页: http://www.hfnl.ustc.edu.cn/detail?id=11480
实验室介绍:
 
个人简历 Personal resume
Research 
By combining materials science, catalysis, and electrochemistry, our research interests are focused on addressing the challenging scientific issues that occur in the field of energy conversion and storage (ECS). Based on the insights into materials science that governs the synthesis of novel nanostructures with controllable size, dimensionality, shape, and composition, as well as the in-depth understanding of critical electrochemical processes that involve in current ECS devices, we are committed to developing new electrocatalysts with optimal OER, HER, HOR and ORR performances for electrolyzers and fuel cells applications by utilizing cheap and easily-prepared transition metal chalcogenides and corresponding hybrid materials. Currently, our interests also contain the hydrogenation and hydrodeoxygenation of bio-oil by electrochemical strategies with rationally designed electrocatalysts in view of the breakthrough in this field will afford our society with clean, safe, and sustainable energy supplies.

Awards and Honors
1.The Qiu Shi Outstanding Young Scholar Award, 2018
(www.qiushi.org/index.php?m=content&c=index&a=show&catid=208&id=3492)
2.1000 Talent Youth Program, 2017
3.Chinese Academy of Sciences Pioneer Hundred Talents Program, 2016
4.Excellent Doctoral Dissertation Award of Chinese Academy of Sciences, 2014
5.Springer Theses Prize Nominated by USTC, 2014
6.The Special Prize for the President Scholarship of Chinese Academy of Sciences, 2012
7.Lu Jiaxi Excellent Graduate Student Award, 2012
8.Academic Award for Doctoral Degree Candidates by Chinese Ministry of Education, 2011
9.Zhu Li Yue Hua Outstanding Graduate Student Scholarship, 2011
10.Academic Award for Doctoral Degree Candidates by USTC, 2011
11.The Best Oral Report Award from Doctoral Forum of China (Chemistry & Material), 2009
12.Funding support from the Creative Scientific Research Foundation for graduate students of USTC, 2009
13.Zhang Zong Zhi Science and Technology Award, 2009


Presentations at Conferences 
1.“Engineering One Dimensional Nanostructures of 3d Metal Chalcogenides for Advanced Electrocatalysts” NST Postdoctoral Seminar, Lemont, IL, Oral Presentation, Invited. (2015).
2.“Water Oxidation Using Alpha-Nickel-Hydroxide as an Electrocatalyst” The 224th ECS Meeting, San Francisco, CA, Oral Presentation, (2013).
3.“Design And Synthesis of Several Kinds of Transition Metal Selenides and Their Hybrid Materials for Oxygen Reduction Reaction” The 6th PhD Student Workshop of USTC-CityU, Hefei, Anhui, Oral Presentation, (2012)
4.“Cobalt Diselenide as Efficient Oxygen Evolution Electrocatalyst” The 1st Annual Academic Conference of USTC, Hefei, Anhui, Oral Presentation, (2011)
5.“Design of Low/Non-Platinum Nanocatalysts for Oxygen Reduction Reaction” Doctoral Forum of China (Chemistry & Material), Nanjing University, Oral Presentation, (2009)
6.“Synthesis of Unique Lamellar Mesostructured CoSe2-Amine (Protonated) Nanobelts in a Binary Solution” The 13th Asian Chemical Congress, Chinese Chemical Society, Shanghai, Poster, (2009)

Representative Publications
After joining the USTC
(* Corresponding author; # Contributed equally)
1) Z. Y. Yu, # Y. Duan, # J. D. Liu, # Y. Chen, X. K. Liu, W. Liu, T. Ma, Y. Li, X. S. Zheng, T. Yao, M. R. Gao*, J. F. Zhu, B. J. Ye, S. H. Yu*. Unconventional CN vacancies suppress iron-leaching in Prussian blue analogue pre-catalyst for boosted oxygen evolution catalysis, Nature Communications 10, NCOMMS-19-08585B (2019). 
2) Q. Gao, R. Wu, Y. Liu, Y. R. Zheng, Y. Li, L. M. Shang, Y. M. Ju, C. Gu, X. S. Zheng, J. W. Liu, J. F. Zhu, M. R. Gao*, S. H. Yu*. Synthesis of PdSx-Mediated Polydymite Heteronanorods and Their Long-Range Activation for Enhanced Water Electroreduction, Research RESEARCH-D-19-00009 (2019).
3) X. X. Yu, Z. Y. Yu, X. L. Zhang, Y. R. Zheng, Y. Duan, Q. Gao, R. Wu, B. Sun, M. R. Gao,* G. X. Wang,* S. H. Yu*. A “Superaerophobic” Nickel Phosphide Nanoarray Catalyst for Efficient Hydrogen Evolution at Ultra-High Current Densities, Journal of the American Chemical Society 141, 7537-7543 (2019).
4) R. Wu,# B. Xiao,# Q. Gao,# Y. R. Zheng, X. S. Zheng, J. F. Zhu, M. R. Gao,* S. H. Yu*. A Janus Nickel Cobalt Phosphide Catalyst for High-Efficiency Neutral-pH Water Splitting, Angewandte Chemie-International Edition 57, 15445-15449 (2018). Inside Back Cover.
5) Y. R. Zheng, P. Wu, M. R. Gao,* X. L. Zhang, F. Y. Gao, H. X. Ju, R. Wu, Q. Gao, R. You, W. X. Huang, S. J. Liu, S. W. Hu, J. F. Zhu, Z. Y. Li, S. H. Yu* Doping-Induced Structural Phase Transition in Cobalt Diselenide Enables Enhanced Hydrogen Evolution Catalysis, Nature Communications 9, 2533 (2018).
6) C. Gu,# S. J. Hu,# X. S. Zheng, M. R. Gao*, Y. R. Zheng, L. Shi, Q. Gao, X. Zheng, W. S. Chu, H. B. Yao, J. F. Zhu, S. H. Yu*. Synthesis of Sub-2 nm Iron-Doped NiSe2 Nanowires and Their Surface-Confined Oxidation for Oxygen Evolution Catalysis, Angewandte Chemie-International Edition 57, 4020-4024 (2018).
7) Z. Y. Yu,# C. C. Lang,# M. R. Gao*, Y. Chen, Q. Q. Fu, Y. Duan, S. H. Yu*. Ni-Mo-O Nanorod-Derived Composite Catalysts for Efficient Alkaline Water-to-Hydrogen Conversion via Urea Electrolysis, Energy & Environmental Science 11, 1890-1897 (2018).
8) M. R. Gao, Y. R. Zheng, J. Jiang, S. H. Yu*. Pyrite-Type Nanomaterials for Advanced Electrocatalysis, Accounts of Chemical Research 50, 2194-2204 (2017).
Before joining the USTC
9) M. R. Gao, Maria K. Y. Chan, Y. G. Sun* Edge-Terminated Molybdenum Disulfide with a 9.4-Å interlayer spacing for electrochemical hydrogen production, Nature Communications 6, DOI: 10.1038/ncomms8493 (2015).
10) M. R. Gao,# J. X. Liang,# Y. R. Zheng, Y. F. Xu, J. Jiang, Q. Gao, J. Li, S. H. Yu* An Effective Molybdenum Disulfide/Cobalt Diselenide Hybrid Catalyst for Electrochemical Hydrogen Generation, Nature Communications 6, DOI:10.1038/ncomms6982 (2015). 
11) M. R. Gao, W. C. Sheng, Z. B. Zhuang, Q. R. Fang, S. Gu, J. Jiang, Y. S. Yan* Efficient Water Oxidation Using Alpha-Nickel-Hydroxide as an Electrocatalyst, Journal of the American Chemical Society 136(19), 7077-7084 (2014).
12) M. R. Gao, Y. F. Xu, J. Jiang, Y. R. Zheng, S. H. Yu*. Water Oxidation Electrocatalyzed by an Efficient Mn3O4/CoSe2 Nanocomposite, Journal of the American Chemical Society 134, 2930-2933 (2012).
13) M. R. Gao, H. B. Yao, W. T. Yao, S. H. Yu*. Synthesis of Unique Ultrathin Lamellar Mesostructured CoSe2 Nanobelts in a Binary Solution, Journal of the American Chemical Society 131, 7486-7487 (2009).
14) M. R. Gao*, S. H. Yu, J. Y. Yuan, W. Y. Zhang, M. Antonietti*. Poly(ionic liquid)-Mediated Morphogenesis of Bismuth Sulfide with a Tunable Band Gap and Enhanced Electrocatalytic Properties, Angewandte Chemie-International Edition 55, 12812-12816 (2016).
15) J. Jiang,# M. R. Gao,# W. Sheng, Y. S. Yan*. Hollow Chevrel-Phase NiMo3S4 for Hydrogen Evolution in Alkaline Electrolyte, Angewandte Chemie-International Edition 55, DOI: 10.1002/anie.201607651R2 (2016). 
16) Y. J. Tang,# M. R. Gao,# C. H. Li, S. L. Li, H. L. Jiang, Y. Q. Lan*, M. Han, S. H. Yu*. Porous Molybdenum-Based Hybrid Catalysts for Highly Efficient Hydrogen Evolution, Angewandte Chemie-International Edition 54, 12928-12932 (2015). 
17) Y. F. Xu,# M. R. Gao,# Y. R. Zheng, J. Jiang, S. H. Yu*. Nickel/Nickel(II) Oxide Nanoparticles Anchored onto Cobalt(IV) Diselenide Nanobelts for the Electrochemical Production of Hydrogen, Angewandte Chemie-International Edition 52, 8546-8550 (2013). 
18) M. R. Gao, Q. Gao, J. Jiang, C. H. Cui, W. T. Yao, S. H. Yu*. A Methanol-Tolerant Pt/CoSe2 Nanobelt Cathode Catalyst for Direct Methanol Fuel Cells, Angewandte Chemie-International Edition 50, 4905-4908 (2011).
19) M. R. Gao, Y. F. Xu, J. Jiang, S. H. Yu* Nanostructured Metal Chalcogenides: Synthesis, Modification, and Applications in Energy Conversion and Storage Devices, Chemical Society Reviews 42, 2986-3017 (2013). Invited Review.
20) M. R. Gao, X. Cao, Y. F. Xu, Q. Gao, Y. R. Zheng, J. Jiang, S. H. Yu* Nitrogen-Doped Reduced Graphene Supported CoSe2 Nanobelt Composite Catalyst for Efficient Water Oxidation, ACS Nano, 8(4), 3970-3978 (2014).
21) M. R. Gao, S. R. Zhang, Y. F. Xu, J. Jiang, S. H. Yu*. Self-Assembled Platinum Nanochain Networks Driven by Induced Magnetic Dipoles, Advanced Functional Materials 24, 916-924 (2014).
22) M. R. Gao, J. Jinag, S. H. Yu*. Solution-Based Synthesis of Late Transition Metal Chalcogenides for Oxygen Reduction, Small 8, 13-27 (2012). Invited Review.
23) M. R. Gao*, J. Y. Yuan, M. Antonietti*. Ionic Liquids and Poly(ionic liquid)s for Morphosynthesis of Inorganic Materials, Chem. Eur. J. 22, DOI: 10.1002/chem.201604191 (2016). Invited Review.

Membership in Professional Societies 
Chinese Chemical Society
The Electrochemical Society

Reviewer for Journals
Nature Communications 
Journal of the American Chemical Society
Angewandte Chemie-International Edition
Advanced Materials
Journal of The Electrochemical Society
Small
ChemSusChem
ChemSelect
Langmuir
CrystEngComm
...


 
研究方向 Research direction
1、合成化学
2、电催化剂
3、新能源材料
 
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