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A new tunnel-type V_(4)O_(9)cathode for high power density aqueous zinc ion batteries
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作者 Qiaoran Wang Tianjiang Sun +3 位作者 Shibing Zheng Lin Li Tao Ma Jing Liang 《Inorganic Chemistry Frontiers》 2021年第20期4497-4506,共10页
A mixed valence V_(4)O_(9)with a tunnel structure and room temperature metallic properties was prepared via partially reducing vanadium pentoxide.Its unique tunnel structure and metallic characteristics are beneficial... A mixed valence V_(4)O_(9)with a tunnel structure and room temperature metallic properties was prepared via partially reducing vanadium pentoxide.Its unique tunnel structure and metallic characteristics are beneficial for fast zinc ion and electron diffusion.A Zn//V_(4)O_(9)battery displays a high rate performance of 234.4 mA h g^(-1)at 50C,a large reversible capacity of 420 mA h g^(-1)at 0.5C,and good cycling stability.The intercalation mechanism of Zn^(2+)and H^(+)is proved by in situ XRD,ex situ XPS,and other characterization techniques,along with density functional theory calculations.This work provides a strategy to improve the electrochemical performance of vanadium oxides through valence regulation. 展开更多
关键词 aqueous zinc ion batteries situ xrdex situ xpsand high power density intercalation mechanism tunnel type cathode rate performance partially reducing vanadium pentoxideits fast ion diffusion
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