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[1]Shiji Shen, Zhenduo Wu , Xiaoye Liu,SiLan Chengwei Wang.Breaking immiscibility barriers: ultrafast sintering of interlocked Cu-Fe-based composites.nature communications,2026,
[2]Bingzi Feng; Wenyi Xiang; Tongtong Shan; Xin Chen; Sixian Zheng; Shiji Shen; Chengwei Wang.Low-Temperature Aluminum-Zinc Hydrogen-Aided Battery.Angewandte Chemie,2025,
[3]L. Chen1, X. Kong1, H. Huang, W. Wu, W. Ping, C. Wang*,.Pyrochlore solid-state electrolytes and mixed ionic and electronic conductors.Energy Storage Mater,2025,
[4](2) X. Kong1, Z. Jin1, W. Lin, X. Huang, B. Feng, H. Huang, Y. Xu, W. Wei, W. Yang, S. Shen, Z. Zhuo, W. Ping, R. Peng, C. Chen, C. Wang*.A High Entropy Mixed Ionic and Electronic Conductor for Accelerating the Cathode Dynamics in All-Solid-State Lithium Metal Batteries.Science Advances,2025,
[5]Wenyi Xiang, et al, Chengwei Wang*.A Hydrogen-Aided Rechargeable Battery.Advanced Materials,2025,
[6]Yifan Xu, et al,Chengwei Wang*.Non-transition metal modulated reducibility strategy for highly conductive mixed electronic and ionic (LixLa2/3-x/3)TiO3 perovskite.Energy Storage Materials,2025,75
[7]Xiangkun Kong, et al, Chengwei Wang*.Maximizing interface stability in all-solid state lithium batteries through entropy stabilization and fast kinetics.Nature Communications,2024,15(1):7247.
[8]Qianqian Pan, et al, Wang Chengwei*.A New Composite Proton Conductor as a High-Performance Electrolyte toward Low Temperature Protonic Ceramic Cells.ACS Energy Letters,2024,9(5):2286-2292.
[9]Xiaoye Liu,et al, Chengwei Wang*.LiCoO2 sintering aid towards cathode-interface-enhanced garnet electrolytes.Journal of Energy Chemistry,2023,84181-188.
[10]Wenyi Xiang,et al, Chengwei Wang*.Rapid Li compensation toward highly conductive solid state electrolyte film.Nano Energy,2023,116108816.
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