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基金委面上项目(在研)
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支持扩展名:.rar .zip .doc .docx .pdf .jpg .png .jpeg燃料电池氢电催化;
氧电催化;
高附加值化学品的绿色合成;
代表性论文:
1. YipengNie, Zipei Cui, Longquan Deng, Zhuo Li, Shuo Chen, Wenchao Sheng⁎,“Geometric-electronic shielding effect: Steering the glycerol electrooxidationon PdBi catalysts toward selective value-added organic products”,Journal of Energy Chemistry,112,814-825,(2026);
2. WenhaoChen, Chang Sun and Wenchao Sheng*,“Aspects in cell design for H2O2 electrosynthesis and its integration in tandemsystems”, EES Catalysis, 3, 359-385,(2025);
3. PengchengZhao, Longquan Deng, Chang Sun, Xianping Li, Xiaoyu Tian, Zhuo Li, and Wenchao Sheng*, “New Insights into theRoles of Surface and Lattice Hydrogen in Electrocatalytic Hydrogen Oxidation”, ACS Catalysis, 15, 1352-1362, (2025);
4. XiaoyuTian, Jiaxiang Liu, Pengcheng Zhao, Xianping Li, Zhuo Li, and Wenchao Sheng*, “The Roles of SurfaceHydrogen and Hydroxyl in Alkaline Hydrogen Oxidation on Ni-BasedElectrocatalysts”, ChemSusChem, 18e202402150, (2025);
5. MujiaHuang, Zipei Cui, Zhuo Li, and WenchaoSheng*, “Switching the Oxygen Reduction Route on Pt Using S through d−pHybridization”, ACS Catalysis, 14,2095-2106, (2024);
6. XiaoyuTian#, Renjie Ren#, Fengyuan Wei, Jiajing Pei, ZhongbinZhuang, Lin Zhuang* & Wenchao Sheng*,“Metal-support interaction boosts the stability of Ni-based electrocatalystsfor alkaline hydrogen oxidation”, NatureCommunications, 15:76 (2024);
7. Zipei Cuiand Wenchao Sheng*, “Thoughts aboutChoosing a Proper Counter Electrode”, ACSCatalysis, 13, 2534-2541, (2023);
8. Chang Sun,Pengcheng Zhao, Yongqing Yang, Zhuo Li, and Wenchao Sheng*, “Lattice Oxygen-Induced d-Band Shifting forEnhanced Hydrogen Oxidation Reaction on Nickel”, ACS Catalysis, 12, 11830-11837, (2022);
9. TiaoyuTian, Pengcheng Zhao, and WenchaoSheng,* “Hydrogen Evolution and Oxidation: Mechanistic Studies and MaterialAdvances”, Advanced Materials, 31,1808066, (2019);
10. Brian M. Tackett, Wenchao Sheng* and Jingguang G. Chen,* “Opportunities andChallenges in Utilizing Metal-Modified Transition Metal Carbides as Low-CostElectrocatalysts”, Joule, 1, 253-263(2017);
11. WenchaoSheng,* Shyam Kattel, SiyuYao, Binhang Yan, Zhixiu Liang, Christopher J. Hawxhurst, Qiyuan Wu andJingguang G. Chen,* “Electrochemical reduction of CO2 to synthesisgas with controlled CO/H2 ratios”, Energy & Environmental Science, 10, 1180-1185 (2017);
12. Wenchao Sheng, Zhongbin Zhuang, Minrui Gao, Jie Zheng, Jingguang G.Chen and Yushan Yan, “Correlating hydrogen oxidation/evolution reactionactivity on platinum at different pH with measured hydrogen binding energy”, Nature Communications, 6, 5848 (2015);
13. WenchaoSheng, Adam P. Bivens,MyatNoeZin Myint, Zhongbin Zhuang, Robert V. Forest, Qianrong Fang, JingguangG. Chen, and Yushan Yan, “Non-precious Metal Electrocatalyst with High Activityfor Hydrogen Oxidation Reaction in Alkaline Electrolytes”, Energy & Environmental Science, 7, 1719-1724 (2014);
14. WenchaoSheng, MyatNoeZin Myint,Jingguang G. Chen and Yushan Yan, “Correlating the hydrogen evolution reactionactivity in alkaline electrolytes with the hydrogen binding energy onmonometallic surfaces”, Energy &Environmental Science, 6, 1509-1512 (2013);
15. WenchaoSheng, Hubert A.Gasteiger, and Yang Shao-Horn, “Hydrogen Oxidation and Evolution ReactionKinetics on Platinum: Acid vs. Alkaline Electrolytes”, Journal of the Electrochemical Society, 157(11), B1529-B1536 (2010);

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