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Vanadium-based polyoxometalate as electron/ion sponge for lithium-ion storage
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Vanadium-based polyoxometalate as electron/ion sponge for lithium-ion storage

Shao-Chu Huang, Chia-Ching Lin, Chih-Wei Hu, Yen-Fa Liao, Tsan-Yao ChenHan-Yi Chen
Journal of Power Sources, 卷.435, 226702
09/2019

摘要

Anode In situ X-ray diffraction In situ X-rayabsorption near edge structure Lithium-ion batteries Polyoxometalates Renewable Energy Sustainability and the Environment Energy Engineering and Power Technology Physical and Theoretical Chemistry Electrical and Electronic Engineering
Polyoxometalates with multiple redox reactions have been reported as electron/ion sponges for lithium-ion storage applications. Here we introduce a vanadium-based polyoxometalate, Na H [PV O ] (NPV), as an anode material for Lithium-ion batteries (LIBs). NPV exhibits a high reversible capacity up to 687 mA h g at 100 mA g with a good capacity retention of ~80% after 150 cycles. In operando synchrotron X-ray absorption near edge structure reveals the change of the valences of vanadium from V to V , indicating that it can transfer at least 30 electrons per molecule which leads to high capacity. In operando synchrotron X-ray diffraction confirms the crystal structure of NPV electrode converts to amorphous during charge/discharge processes. Therefore, the charge storage mechanism of NPV could be further proposed that Li ions insert into amorphous NPV electrode continuously and react with [PV O ] molecules, and [PV O ] is like an electron/ion sponge which can store at least 30 electrons.

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