钒
材料科学
阴极
钛
锂(药物)
涂层
电化学
二硫化钼
磷酸钒锂电池
过渡金属
化学工程
无机化学
纳米技术
电极
复合材料
冶金
化学
催化作用
物理化学
有机化学
内分泌学
工程类
医学
作者
Lu Li,Zhaodong Li,Anthony Yoshimura,Congli Sun,Tianmeng Wang,Yanwen Chen,Zhizhong Chen,Aaron J. Littlejohn,Yu Xiang,Prateek Hundekar,Stephen F. Bartolucci,Jian Shi,Su‐Fei Shi,Vincent Meunier,G.-C. Wang,Nikhil Koratkar
标识
DOI:10.1038/s41467-019-09400-w
摘要
Abstract Unlike the vast majority of transition metal dichalcogenides which are semiconductors, vanadium disulfide is metallic and conductive. This makes it particularly promising as an electrode material in lithium-ion batteries. However, vanadium disulfide exhibits poor stability due to large Peierls distortion during cycling. Here we report that vanadium disulfide flakes can be rendered stable in the electrochemical environment of a lithium-ion battery by conformally coating them with a ~2.5 nm thick titanium disulfide layer. Density functional theory calculations indicate that the titanium disulfide coating is far less susceptible to Peierls distortion during the lithiation-delithiation process, enabling it to stabilize the underlying vanadium disulfide material. The titanium disulfide coated vanadium disulfide cathode exhibits an operating voltage of ~2 V, high specific capacity (~180 mAh g −1 @200 mA g −1 current density) and rate capability (~70 mAh g −1 @1000 mA g −1 ), while achieving capacity retention close to 100% after 400 charge−discharge steps.
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