相关文献:
1. Alkyl-substituted poly(arylene piperidinium) membranes enhancing the performance of hightemperature polymer electrolyte membrane fuel cells, Jinyuan Li, Congrong Yang, Xiaoming Zhang, Zhangxun Xia, Suli Wang*, Shansheng Yu and Gongquan Sun*, J. Mater. Chem. A, 2023, 11, 18409–18418
2. Phosphoric acid resistance PtCu/C oxygen reduction reaction electrocatalyst for HT-PEMFCs: A theoretical and experimental study, Xiaoming Zhang, Zhao An, Zhangxun Xia, Huanqiao Li, Xinlong Xu, Shansheng Yu, Suli Wang*, Gongquan Sun*, Applied Surface Science 619 (2023) 156663
3. Uneven phosphoric acid interfaces with enhanced electrochemical performance for high-temperature polymer electrolyte fuel cells, Zinan Zhang, Zhangxun Xia, Jicai Huang, Fenning Jing, Xiaoming Zhang, HuanqiaoLi, Suli Wang*, Gongquan Sun*, Sci. Adv.9, eade1194(2023)
4. Xinlong Xu#, Xiaoming Zhang#, Zhichong Kuang, Zhangxun Xia, Alexandre I. Rykov, Shansheng Yu, Junhu Wang*, Suli Wang**, Gongquan Sun**, Investigation on the demetallation of Fe-N-C for oxygen reduction reaction: The influence of structure and structural evolution of active site, Applied Catalysis B: Environmental 309 (2022) 121290;
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6. Min Wang#, Wenjia Ma#, Congrong Yang, Zhangxun Xia, Suli Wang*, Gongquan Sun*, Study on fiber-reinforced proton exchange membrane using high-surface-energy substrate, Journal of Membrane Science 647 (2022) 119940;
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论文著作:
1. Effect of Surface Manganese Valence of Manganese Oxides on the Activity of the Oxygen Reduction Reaction in Alkaline Media
Qiwen Tang; Luhua Jiang; Jing Liu; Suli Wang; Gongquan Sun
ACS Catalysis, 2013
2. FT-IR Study of the Microstructure of Nafion® Membrane
ZX Liang; WM Chen; JG Liu; SL Wang; ZH Zhou; WZ Li; GQ Sun; Q Xin
Journal of Membrane Science, 2004
3. Novel Synthesis of Highly Active Pt/C Cathode Electrocatalyst for Direct Methanol Fuel Cell
Zh Zhou; Sl Wang; Wj Zhou; Gx Wang; Lh Jiang; Wz Li; Sq Song; Jg Liu; Gq Sun; Q Xin
CHEMICAL COMMUNICATIONS, 2003
4. Recent Advances in Multi-Scale Design and Construction of Materials for Direct Methanol Fuel Cells
Zhangxun Xia; Xiaoming Zhang; Hai Sun; Suli Wang; Gongquan Sun
Nano Energy, 2019
5. Influence of Electrode Structure on the Performance of a Direct Methanol Fuel Cell
ZB Wei; SL Wang; BL Yi; JG Liu; LK Chen; WJ Zhou; WZ Li; Q Xin
Journal of Power Sources, 2002
6. Promoting Effect of Ni in PtNi Bimetallic Electrocatalysts for the Methanol Oxidation Reaction in Alkaline Media: Experimental and Density Functional Theory Studies
Qian Jiang; Luhua Jiang; Hongying Hou; Jing Qi; Suli Wang; Gongquan Sun
Journal of physical chemistry C/Journal of physical chemistry C, 2010
7. Surface Modification of Sulfonated Poly(ether Ether Ketone) Membranes Using Nafion Solution for Direct Methanol Fuel Cells
SZ Ren; CN Li; XS Zhao; ZM Wu; SL Wang; GQ Sun; Q Xin; XF Yang
Journal of Membrane Science, 2004
8. NiFe Layered Double Hydroxides with Unsaturated Metal Sites Via Precovered Surface Strategy for Oxygen Evolution Reaction
Chuchu Wu; Huanqiao Li; Zhangxun Xia; Xiaoming Zhang; Ruoyi Deng; Suli Wang; Gongquan Sun
ACS Catalysis, 2020
9. Insight into the Role of Ni–Fe Dual Sites in the Oxygen Evolution Reaction Based on Atomically Metal-Doped Polymeric Carbon Nitride
Chuchu Wu; Xiaoming Zhang; Zhangxun Xia; Miao Shu; Huanqiao Li; Xinlong Xu; Rui Si; Alexandre I. Rykov; Junhu Wang; Shansheng Yu; Suli Wang; Gongquan Sun
Journal of Materials Chemistry A, 2019
10. Atomically Dispersed Fe-N-C Derived from Dual Metal-Organic Frameworks As Efficient Oxygen Reduction Electrocatalysts in Direct Methanol Fuel Cells
Xinlong Xu; Zhangxun Xia; Xiaoming Zhang; Ruili Sun; Xuejing Sun; Huanqiao Li; Chuchu Wu; Junhu Wang; Suli Wang; Gongquan Sun
APPLIED CATALYSIS B-ENVIRONMENTAL, 2019