Grand challenges in membrane applications—Energy
Zhizhang Yuan, Xianfeng Li*
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Perspective of alkaline zinc-based flow batteries
Zhizhang Yuan, Xianfeng Li*
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Bromine–Graphite Intercalation Enabled Two-Electron Transfer for a Bromine-Based Flow Battery
Yue Xu, Congxin Xie,* Xianfeng Li*
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Bromine Assisted MnO2 Dissolution Chemistry: Toward a Hybrid Flow Battery with Energy Density of over 300 Wh L−1
Yun Liu, Congxin Xie,* Xianfeng Li*
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Multi-wall carbon nanotube-induced nanobelt potassium vanadate composite as cathode for sodium-ion batteries
Guangxu Ge, Qiong Zheng,* Xianfeng Li*
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Functional Complexed Zincate Ions Enable Dendrite-free Long Cycle Alkaline Zinc-based Flow Batteries
Liping Zhi, Tianyu Li, Xiaoqi Liu, Zhizhang Yuan,* Xianfeng Li*
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液流电池储能技术研究进展
袁治章,刘宗浩,李先锋*
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Recent development and prospect of membranes for alkaline zinc-iron flow battery
Liping Zhi, Zhizhang Yuan,* Xianfeng Li*
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Low-cost all-iron flow battery with high performance towards long-duration energy storage
Xiaoqi Liu, Tianyu Li, Zhizhang Yuan,* Xianfeng Li*
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Enhancement of Plasmon-Induced Photoelectrocatalytic Water Oxidation over Au/TiO2 with Lithium Intercalation
Hao Li, Shengyang Wang, Mingtan Wang, Yuying Gao, Jianbo Tang, Shengli Zhao, Haibo Chi, Pengfei Zhang, Jiangshan Qu, Fengtao Fan, Can Li*
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Lamella-like electrode with high Br2-entrapping capability and activity enabled by adsorption and spatial confinement effects for bromine-based flow battery
Luyin Tang, Tianyu Li, Wenjing Lu,* Xianfeng Li*
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A −60 °C Low-Temperature Aqueous Lithium Ion-Bromine Battery with High Power Density Enabled by Electrolyte Design
Mingtan Wang, Tianyu Li, Yanbin Yin,* Jingwang Yan, Huamin Zhang, Xianfeng Li*
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Tailoring interfacial Zn2+ coordination via a robust cation conductive film enables high performance zinc metal battery
Hefei Fan, Min Wang, Yanbin Yin, Qianfeng Liu, Bo Tang, Gongquan Sun, Erdong Wang,* Xianfeng Li*
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Machine Learning for Flow Batteries: Opportunities and Challenges
Tianyu Li, Changkun Zhang,* Xianfeng Li*
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Sb-Doped high-voltage LiCoO2 enabled improved structural stability and rate capability for high-performance Li-ion batteries
Cong Chen, Tianyu Li, Xiaofei Yang, Chao Qu, Yang Luo, Yuxiao Wang, Huamin Zhang, Hongzhang Zhang,* Xianfeng Li*
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