总体情况:
已发表SCI论文140余篇,其中第一或通讯作者论文70余篇;
论著信息及引用数据
Google Scholar:https://scholar.google.ca/citations?user=brq6AJcAAAAJ&hl=en
Web of Science:https://www.webofscience.com/wos/author/record/AAV-4047-2021
ORCID: https://orcid.org/0000-0002-4201-0130
10篇代表作(*表示通讯作者, +表示共同第一作者)(1)C. Wang+, R. Xu+, Y. Zhong+, H. Su, S. Liang, H. Ren, J. T. Kim, H. Huang, B. Xiao, L. Jiao, J. Tu, X. Sun*, Electronic conductivity of solid electrolytes causes physical self-discharge in all-solid-state batteries, Nat. Energy 2026, https://doi.org/10.1038/s41560-026-02090-x.
(2)J. Fu+, C. Wang+, S. Wang+, J. W. Reid, J. Liang, J. Luo, J. T. Kim, Y. Zhao, X. Yang, F. Zhao, W. Li, B. Fu, X. Lin, Y. Hu, H. Su, X. Hao, Y. Gao, S. Zhang, Z. Wang, J. Liu, H. Abdolvand, T.-K. Sham*, Y. Mo*, X. Sun*, A cost-effective all-in-one halide material for all-solid-state batteries, Nature 2025, 643, 111.
(3)Y. Hu+, H. Su+, J. Fu+, J. Luo, Q. Yu, F. Zhao, W. Li, S. Deng, Y. Liu, Y. Yuan, Y. Gan, Y. Wang, J. T. Kim, N. Chen, M. Shakouri, X. Hao, Y. Gao, T. Pang, N. Zhang, M. Jiang, X. Li, Y. Zhao, J. Tu, C. Wang*, X. Sun*, Solid solvation structure design improves all-solid-state organic batteries, Nat. Chem. 2025, 17, 1313.
(4)J. T. Kim, H. Su, Y. Zhong, C. Wang, H. Wu, D. Zhao, C. Wang*, X. Sun*, Y. Li*, All-solid-state lithium–sulfur batteries through a reaction engineering lens, Nat. Chem. Eng. 2024, 1, 400.
(5)P. Lu†, Z. Zhou†, S. Cao†, J. Fu, W. Li, K. Tuo, S. Liang, J. Hong, J. Lei, J. Zhang, Z. Wang, S. Zhang, G. Hu, C. Wang, T. Liu, S. Weng, W. Xia, X. Wang, X. Sun*, C. Wang*, Unraveling the Foreign-Cation Effect in UCl₃-Type Halide Solid Electrolytes for Low-Temperature All-Solid-State Batteries, Nat. Commun. 2026, 17, 5495.
(6)J. Zhang†, S. Xia†, P. Lu, S. Liang, J. Fu, Z. Zhou, W. Yan, G. Hu, K. Tuo, J. Hong, S. Zhang, Z. Wang, X. Sun*, C. Wang*, Strain-Coordination Strategy Enabling Low-Pressure and Long-Cycling All-Solid-State Lithium-Sulfur Batteries, Nat. Commun. 2026, 17, 7858.
(7)J. Sang+, B. Liu+, S. Jiang+, S. Liang, T. Liu, K. Tuo, H. Huang, L. Xie, Y. Yu*, G. Shao, X. Sun*, C. Wang*, Ultrahigh Te-Content Low-Pressure All-Solid-State Li–Te Batteries, J. Am. Chem. Soc. 2026, 148, 28101.
(8)Z. Zhou†, P. Lu†, S. Liang, K. Tuo, J. Fu, S. Xia, Y. Chen, Z. Wu, J. Zhang, Z. Wang, S. Zhang, G. Hu, J. Hong, M. Zhu, C. Wang, T. Liu, M. Wei, W. Xia, L. Chen*, X. Sun*, C. Wang*, Embedding Fe-based Redox Chemistry into Low-Cost Oxyhalide Solid Electrolytes for High-Performance All-Solid-State Batteries, Adv. Mater. 2026, 18, e72694.
(9)S. Zhang†, J. Fu†, G. Hu, Y. Zheng, C. Wang, S. Xia, P. Lu, J. Zhang, M. Zhang, M. Wei, J. Hong, Z. Wang, Z. Zhou, J. Peng, L. Chen*, X. Sun*, C. Wang*, Dual-Solvent Supramolecular Assembly Enables Ampere-Hour Halide All-Solid-State Pouch Cell, Adv. Mater. 2026, e74206.
(10)M. Zhu†, S. Xia†, C. Wang†, H. Hu, Z. Wang, L. Xie, K. Tuo, Z. Zhou, M. Wei, T. Liu, S. Liang, G. Hu, S. Zhang, J. Hong, X. Sun*, C. Wang*, Li2CO3-Derived Low-Cost Li2S for Sulfide Solid Electrolytes Exceeding 11 mS cm−1. Angew. Chem. Int. Ed. 2026, 65, e8115835
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