
蒋浩然
- 教师拼音名称:JIANG Haoran
- 性别:男
- 职称:教授
- 所属院系:机械工程学院
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· M.C. Wu, T.S. Zhao, H.R. Jiang, Y.K. Zeng, Y.X. Ren. “High-performance zinc bromine flow battery via improved design of electrolyte and electrode”. Journal of Power Sources, 355 (2017) 62-68.
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· M. Liu, D. Zhou, H.R. Jiang, Y.X. Ren, F.Y. Kang, T.S. Zhao. “A highly-safe lithium-ion sulfur polymer battery with SnO2 anode and acrylate-based gel polymer electrolyte”. Nano Energy, 28 (2016) 97-105.
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· M.C. Wu, T.S. Zhao, H.R. Jiang, L. Wei, Z.H. Zhang. “Facile preparation of high-performance MnO2/KB air cathode for Zn-air batteries”. Electrochimica Acta, 222 (2016) 1438-1444.
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· R.H. Zhang, M.C. Wu, X.Z. Fan, H.R. Jiang, T.S. Zhao. “A Li-S battery with ultrahigh cycling stability and enhanced rate capability based on novel ZnO yolk-shell sulfur host”. Journal of Energy Chemistry, 55 (2021) 136-144.
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· R.H. Zhang, M.C. Wu, X.Z. Fan, H.R. Jiang, T.S. Zhao. “Superior cycling life of Li–S batteries with high sulfur loading enabled by a bifunctional layered-MoO3 cathode”. Journal of Power Sources, 436 (2019) 226840.
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· K. Liu, R.H. Zhang, M.C. Wu, H.R. Jiang, T.S. Zhao. “Ultra-stable lithium plating/stripping in garnet-based lithium-metal batteries enabled by a SnO2 nanolayer”. Journal of Power Sources, 433 (2019) 226691.
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· L. Wei, L. Zeng, M.C. Wu, H.R. Jiang, T.S. Zhao. “An aqueous manganese-copper battery for large-scale energy storage applications”. Journal of Power Sources, 423 (2019) 203-210.
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· C. Xiong, T.S. Zhao, Y.X. Ren, H.R. Jiang, X.L. Zhou. “Mathematical modeling of the charging process of Li-S batteries by incorporating the size-dependent Li2S dissolution”. Electrochimica Acta, 296 (2019) 954-963.
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· L. Zeng, T.S. Zhao, L. Wei, H.R. Jiang, M.C. Wu. “Anion exchange membranes for aqueous acid-based redox flow batteries: Current status and challenges”. Applied Energy, 233-234 (2018) 622-643.
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· X.H. Yan, X.L. Zhou, T.S. Zhao, H.R. Jiang, L. Zeng. “A highly selective proton exchange membrane with highly ordered, vertically aligned, and subnanosized 1D channels for redox flow batteries”. Journal of Power Sources, 406 (2018) 35-41.