CURRICULUM VITAE
Hua Wuxing, Ph.D. in Engineering, graduated from the School of Chemical Engineering of Tianjin University in 2021 (under the tutelage of Professor Yang Quanhong), and joined the School of Physics and Electronics of Henan University in the same year. He mainly engaged in the research of new two-dimensional materials and advanced electrochemical energy storage devices. At present, as the first/co-author, he has published 6 SCI papers in Nature Catalysis, Advanced Materials, Advanced Functional Materials, ACS Nano, Journal of Electrochemistry, and other journals, and co-published more than 10 SCI papers, and related papers have been published by Nature Catalysis, Chemical Reviews, Nature Communications, Joule and other high-level journals cited more than 1000 times (Google), authorized 2 patents. He has successively won the "Excellent Doctoral Dissertation of Tianjin University" and the "Central Plains Talent Program" of Henan Province Young Top Talents (Central Plains Young Postdoctoral Innovation Talents); He presided over the first class of China's postdoctoral research and Henan Provincial Natural Science Foundation (Qingji) and other projects.
CONTACT IINFORMATIIONADDRESS: B402, School of Physics and Electronics, Henan University PHONE: (086) 13132262036 WEBSITE: https://kchenmat.henu.edu.cn EMAIL: wxhua@henu.edu.cn
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EDUCATION
2010-2014 Bachelor of Science (Applied Chemistry) Xinyang Normal University, China
2014-2017 Master of Science (Chemistry) Wenzhou University, Chian 2017-2021 Doctor of Engineering (Applied Chemistry) Tianjin University, China
ACADEMIC APPOINTMENTS
2021- Lecturer, Postdoctoral Fellow, School of Physics and Electronics, Henan University 2021- Lecturer, Henan University, School of Physics and Electronics, Lecturer, Associate Professor
1. Design and synthesis of novel two-dimensional materials and electrocatalytic nanomaterials 2. Electrochemical energy storage device (Lithium-sulfur batteries and Li-ion batteries)
HOST THE PROJECT
1. National Natural Science Foundation of China Youth Project, Controlling the p Charge of Te in Tellurium Electrocatalysts to Optimize the Performance of Lithium-Sulfur Batteries, PI 2. "Zhongyuan Talent Program" Young Top-notch Talent (Zhongyuan Young Postdoctoral Innovative Talent), controllable preparation of two-dimensional tellurium-based catalyst with rich active site and its selective catalytic mechanism in lithium-sulfur batteries, presided over 3. Special funding from the China Postdoctoral Science Foundation Station, Regulation of the p charge of Te in metal telluride electrocatalysts to promote sulfur reduction, Principal Investigator 4. The 71st batch of general funding from the China Postdoctoral Science Foundation of China, "Controllable construction and catalytic mechanism research of selective catalytic materials in lithium-sulfur batteries". 5. Natural Science Foundation of Henan Province Youth Project, for the design of two-dimensional tellurium-based catalysts with rich active sites for lithium-sulfur batteries and their selective catalytic mechanism
SELECTED PAPERS
1. Wuxing Hua#, Tongxin Shang#, Huan Li#, Yafei Sun#, Wei Lv*, Ying Wan*, et al. Optimizing the p charge of S in p-block metal sulfides for sulfur reduction electrocatalysis. Nature Catalysis, 2023, DOI:10.1038/s41929-023-00912-9.(ESI is highly cited,50 times) 2. Wuxing Hua#, Huan Li#, Chun Pei#, Ying Wan*, Quan-Hong Yang*, et al. Selective Catalysis Remedies Polysulfide Shuttling in Lithium-Sulfur Batteries, Advanced Materials, 2021, 33, 2101006. (ESI is highly cited,235 times) 3. Wuxing Hua, Yang Zhi*, Shaoming Huang*, et al. Polysulfide-scission reagents for the suppression of the shuttle effect in lithium–sulfur batteries, ACS Nano, 2017, 11, 2209-2218. (ESI is highly cited,195 times) 4. Li Wang#, Wuxing Hua#, Quan-Hong Yang*, Weichao Wang*, et al. Design rules of a sulfur redox electrocatalyst for lithium–sulfur batteries. Advanced Materials, 2022, 34, 2110279.(ESI is highly cited,124 times) 5. Jingyi Xia#, Wuxing Hua#, Li Wang#, Ying Wan*, Quan-Hong Yang*, et al. Boosting catalytic activity by seeding nanocatalysts onto interlayers to inhibit polysulfide shuttling in Li–S batteries. Advanced Functional Materials, 2021, 31, 2101980.(ESI is highly cited,116 times) 6. Wuxing Hua#, Jingyi Xia#, Wei Lv*, Quan-Hong Yang*, et al. Bimetallic Compound Catalysts with Multiple Active Centers for Accelerated Polysulfide Conversion in Li-S Batteries, Journal of Electrochemistry, DOI: 10.13208/j.electrochem.2217006.(Invitation, lithium-sulfur battery album)
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