论文著作:
1. Pore-engineered Fe–N–C catalyst layer enabling hydration stability for >100 °C fuel cells, Y. Yin, X. Zhou, H. Liu, C. Guan, M. Zhu, L. Wang*, J. Zhang*, Carbon, 245, 120760 (2025).
2. Modulating built-in electric field strength in Ru/RuO2 interfaces through Ni doping to enhance hydrogen conversion at ampere-level current, T. Liu, L. Wang, B. Chen, H. Liu, S. Wang, Y. Feng*, J. Zhang*, Y. Yin, M.D. Guiver*, Angew. Chem. Int. Ed. (2025). (Hot Paper, Angew. Chem.:调控Ru/RuO₂界面内建电场强度强化安培级电流制氢性能)
3. Design of furrow-ridge cathode catalyst layer to alleviate carbon corrosion in proton exchange membrane fuel cells, Y. Pei, W. Zhu, H. Liu, X. Zhou, L. Wang, J. Zhang*, Y. Yin*, J. Power Sources, 630, 236111 (2025).
4. Controllable construction of Pt/CNT catalyst layers to improve Pt utilization in PEMFCs, Y. Pei, W. Zhu, R. Yue, L. Wang, R. Li*, J. Zhang*, Y. Yin*, J. Mater. Chem. A, 12, 739-747 (2024). (Cover)
5. Interface-engineered NiFe/Ni-S nanoparticles for reliable alkaline oxygen production at industrial current: a sulfur source confinement strategy, B. Chen, T. Liu, J. Zhang*, S. Zhao, R. Yue, S. Wang, L. Wang, Z. Chen, Y. Feng, J. Huang, Y. Yin*, M. D. Guiver, Small, 20, 2310737 (2024). (Cover)
6. Manganese as electron reservoir stabilized RuMnOx@RuOx with enhanced activity and robust durability for acidic water oxidation, Y. Qin, X. Niu, R. Zhao, J. Sun, Z. Xu, Z. Guo, D. Liu, L. Guo, L. Chang, J. Zhang, Q. Wang*, ACS Catalysis,14, 12970-12981 (2024).
7. High-temperature anion-exchange membrane fuel cells with balanced water management and enhanced stability, J. Xue, J. Douglin, K. Yassin, T. Huang, H. Jiang, J. Zhang, Y. Yin*, D. Dekel*, M.D. Guiver*, Joule, 8(15), 1457-1477 (2024).
8. Conformational distortion of the ionomer backbone for reinforcing the catalyst layer under dynamic operation, C. Zheng, D. Xiao, J. Zhang, Y. Pei, L. Wang, X. Liu, Y. Yin, M. D. Guiver, X. Li, J. Mater. Chem. A, 33 (2023). (Cover)
9. Sulfidation of CoCuOx supported on nickel foam to form heterostructure and oxygen vacancies for high-performance anion exchange membrane water, J. Zhang, S. Zhao, B. Chen, S. Yin, Y. Feng, Y. Yin, ACS Appl. Mater. & Inter., 15(39), 45756–45763 (2023).
10. 高性能Ir基阳极双催化层阴离子交换膜电解水,尹燕,尹硕尧,陈斌,冯英杰,张俊锋, 材料导报
11. Defect-engineered ZIF-derived non-Pt cathode catalyst at 1.5 mg cm-2 loading for proton exchange membrane fuel cells, W. Zhu, H. Liu, Y. Pei, J. Zhang*, Y. Yin*, M. D. Guiver*, Small, 2302090 (2023).
12. Space confinement to regulate CoPt nanoalloy size for reliable cathode reaction in PEMFC under dynamic conditions, W. Zhu, Y. Pei, H. Liu, R. Yue, S. Ling, J. Zhang*, Y. Yin*, M. D. Guiver*, Adv. Sci., 2206062 (2023).
13. Fine adjustment of catalyst agglomerate for the controllable construction of Co/Fe-N-C catalyst layers, Y. Pei, W. Zhu, R. Yue, J. Yao, X. Liu, L. Wang, J. Zhang*, Y. Yin*, M. D. Guiver*, J. Power Sources, 566, 232904 (2023).
14. Single solution-phase synthesis of charged covalent organic framework nanosheets with high volume yield, T. Huang, H. Jiang, J. C. Douglin, Y. Chen, S. Yin, J. Zhang, X. Deng, H. Wu, Y. Yin, D. R. Dekel, M. D. Guiver, Z. Jiang, Angew. Chem. Int. Ed., 62, e202209306 (2023). (Highly cited)
15. Synthesis of fine nano-Pt supported on carbon nanotubes for hydrogen oxidation under alkaline conditions, Y. Yan, R. Yue, J. Zhang. Energy, 128339 (2023).
16. Fast current-driven synthesis of ZIF-derived catalyst layers for high-performance Zn-air battery, W. Zhu, H. Liu, R. Yue, Y. Pei, J. Zhang*, X. Liu, R. Li, Y. Yin*, M. D. Guiver, Small, 2022, 18(35), 2202660.
17. Multi-scale study on bifunctional Co/Fe‒N‒C cathode catalyst layers with high active site density for the oxygen reduction reaction, W. Zhu, Y. Pei, J. C. Douglin, J. Zhang*, H. Zhao, J. Xue, Q. Wang, R. Li, Y. Qin, Y. Yin*, D. R. Dekel*, M. D. Guiver, Appl. Catal. B: Environ, 299(15), 120656 (2021). (Highly cited)
18. Recent insights on catalyst layers for anion exchange membrane fuel cells, J. Zhang, W. Zhu (co-first author), T. Huang, C. Zheng, Y. Pei, G. Shen, Z. Nie, D. Xiao, Y. Yin*, M. D. Guiver*, Adv. Sci., 2021000284 (2021). (Highly cited, Hot Topic:membranes)
19. Self-adjusting anode catalyst layer for smart water management in anion exchange membrane fuel cells, J. Zhang, Y. Liu (co-first author), W. Zhu, Y. Pei, Y. Yin*, Y. Qin, X. Li, M. D. Guiver*, Cell Rep. Phy. Sci., 2, 100377 (2021).
20. Ionomer dispersion solvent influence on the microstructure of Co–N–C catalyst layers for anion exchange membrane fuel cell, J. Zhang, Y. Pei (co-first author), W. Zhu, Y. Liu, Y. Yin*, Y. Qin, M. D. Guiver*, J. Power Sources, 484, 229259 (2021).
21. Mechanically robust microporous anion exchange membranes with efficient anion conduction for fuel cells, T. Huang, J. Zhang (co-first author), Y. Pei, X. Liu, J. Xue, H. Jiang, X. Qiu, Y. Yin*, H. Wu, Z. Jiang, M. D. Guiver*, Chem. Eng. J., 418, 129311 (2021). (Highlighted)
22. Toward alkaline-stable anion exchange membranes in fuel cells: cycloaliphatic quaternary ammonium-based anion conductors, J. Xue, J. Zhang (co-first author), X. Liu, T. Huang, H. Jiang, Y. Yin, Y. Qin, M. D. Guiver, Electro. Energ. Rev., 5, 348-440 (2022). (Invited)
23. Mass transfer in a Co/N/C catalyst layer for the anion exchange membrane fuel cell, W. Zhu, Y. Pei, Y. Liu, J. Zhang*, Y. Qin, Y. Yin*, M. D. Guiver, ACS Appl. Mater. Inter., 12, 32842-32850 (2020).
24. Oriented proton-conductive nano-sponge-facilitated polymer electrolyte membranes, X. Liu, J. Zhang (co-first author), C. Zheng, J. Xue, T. Huang, Y. Yin*, Y. Qin, K. Jiao, Q. Du, M. D. Guiver*, Energ, Environ. Sci., 13, 297-309 (2020).