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Three-dimensional nanostructured Co_(2)VO_(4)-decorated carbon nanotubes for sodium-ion battery anode materials
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作者 Yi Zhang Zhen Zhang +7 位作者 Sheng Yu Hannah M.Johnson De-Cheng Zhao su-chong tan Zheng-Dao Pan Zhou-Lu Wang Yu-Tong Wu Xiang Liu 《Rare Metals》 SCIE EI CAS CSCD 2023年第12期4060-4069,共10页
Since Co_(2)VO_(4) possesses a solid spinel structure and a high degree of stability,it has gained interest as a possible anode material for sodium-ion batteries.However,the application of this electrode material is s... Since Co_(2)VO_(4) possesses a solid spinel structure and a high degree of stability,it has gained interest as a possible anode material for sodium-ion batteries.However,the application of this electrode material is still hampered by its poor electrical conductivity and severe volume expansion.Uniform Co_(2)VO_(4) nanoparticles(CVO)were grown on carbon nanotubes(CNTs)by a simple solvothermal method to form string-like conductive networks(CVO/CNTs).The flexible and highly conductive three-dimensional(3D)carbon nano tubes and small-sized CVO NPs can enhance the rapid transport of electrons,thereby enhancing the conductivity of the composite.String-like conductive network structures have a larger specific surface area,enhancing electron/ion transmission by fully contacting the electrolyte.The findings demonstrate the superior Na^(+)storing capability of the CVO/CNTs composite.The battery has a great rate performance(148.2 mAh·g^(-1)at 5 A·g^(-1))and outstanding long-term cycling performance(147.3 mAh·g^(-1)after 1000 cycles at 1A·g^(-1)).In high-rate,long-cycle sodium-ion batteries,CVO/CNTs composites offer a wide range of possible applications. 展开更多
关键词 Sodium-ion batteries(SIBs) Co_(2)VO_(4) Carbon nanotubes(CNTs) Anode Long-cycle
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