1.新型镍氢储能电池关键技术研究,甘肃省金川集团,180万,2022.7 2.钒基储氢合金制备关键技术,四川省科技厅,40万,2022.1 3.四川稀土科技及产业演化历史与未来创新性发展路径,四川省科技厅,10万,2022.1 4.三位多孔碳材料的可控制备及其性能研究,西南科技大学开放基金,10万,2019.1 5.低温高功率镍氢动力电池关键材料与器件,四川省科技厅,10万,2017.1 6.新型非水性Li-O2/TiS2混合电池高功率输出机制,国家自然基金青年基金,20万,2017.1 7.铁镍电池高比容量铁负极材料产业化关键技术开发,四川省科技厅,25万,2017.1
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1.Enhancing the Hydrogen Storage Properties of Ti−Mn Alloys by Ti Occupying Mn Sites: An Experimental and Theoretical Study, ACS Sustainable Chemistry & Engineering 2024, 12, 5819 2.Bifunctional interface of metal–organic framework synergized with bismuth endows high stable zinc anode, Chemical Engineering Journal, 2024, 485, 149740 3.A scalable top-down strategy toward practical metrics of Ni–Zn aqueous batteries with total energy densities of 165 W h kg−1 and 506 W h L−1, Energy & Environmental Science, 2020,13, 4157 4.Ultrafast Co0.8Al0.2-Layered Double-Hydroxide Nanosheets Cathode for High-Performance Co-Zn Battery, ACS Sustainable Chemistry & Engineering 2020, 8, 14877 5.Hierarchical NiSe2 Nanosheet Arrays as a Robust Cathode toward Superdurable and Ultrafast Ni–Zn Aqueous Batteries, ACS Applied Materials & Interfaces 2020, 12, 34931 6.Ni3S2-coated metal hydride anode with high-power and long-life performance for low-temperature Ni-MH power batteries, Chemical Engineering Journal. 2020, 379, 122204 |
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