Composite Yolk-shell NiCo 2 V 2 O 8 @TiO 2 @NC Material as Anode for Lithium-ion Batteries
Yuting ZHANG, Xiaobin LI, Zunyi LIU, Ning LI, Yu ZHAO
Lanzhou University of Technology Lanzhou Petrochemical Polytechnic
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摘要与影响
Transition metal vanadates, as an advantageous anode material for lithium-ion batteries, currently have bottlenecks such as unsatisfied conductivity and cycle stability caused by drastic volume changes during charging and discharging.In this study, NiCo2V2O8@TiO2@NC material with a multi-level composite core-shell structure was prepared using a step-by-step coating strategy to improve this defect.Initially, yolk-shell structured NiCo2V2O8 nanospheres were synthesized as the precursor through hydrothermal synthesis and ion exchange methods.Subsequently, a robust TiO2 layer and a nitrogen-doped carbon (NC) network structure were coated on the surface, resulting in the formation of a hierarchical mesoporous nanostructure.The specific yolk-shell nanosphere structure provides abundant channels for Li + transport in NiCo2V2O8, a promising electrochemical active material.Further coating with a TiO2 layer not only enhances the stability and durability of the material, but also offers additional electrochemical active sites.Moreover, the introduction of the nitrogen-doped carbon network structure not only improves the conductivity of the ordered multi-level core-shell NiCo2V2O8@TiO2@NC material but also facilitates rapid electron transport, further optimizing its electrochemical performance.Lithium-ion battery anode materials prepared under optimal conditions, 第*期 张宇婷, 等: 复合蛋黄壳型 NiCo2V2O8
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工程Advancements in Battery Materials
Transition Metal Oxide Nanomaterials · Semiconductor materials and devices
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