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首页> 外文期刊>ACS nano >Ultrafine Ti3C2 MXene Nanodots-Interspersed Nanosheet for High-Energy-Density Lithium-Sulfur Batteries
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Ultrafine Ti3C2 MXene Nanodots-Interspersed Nanosheet for High-Energy-Density Lithium-Sulfur Batteries

机译:超细Ti3C2 MXENE NANODOTS - 用于高能密度锂 - 硫电池的inderspersed Nanoshe

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摘要

Nanostructured carbon materials have been extensively used for encapsulating sulfur and improving cyclic stability of lithium-sulfur (Li-S) batteries, but high carbon content and low packing density greatly limit their volumetric energy density. Herein, we present MXene-based Ti3C2Tx (T-x stands for the surface terminations) nanodots-interspersed Ti3C2Tx nanosheet (TCD-TCS) to accomplish spatial immobilization and conversion of high-loaded sulfur species. Rich surface polar sites in TCD-TCS enhance structural integrity of the resultant electrode, while the absence of the carbon-based materials and conductive additives results in high tap density of the cathode materials. The TCD-TCS/S electrode exhibits an almost theoretical discharge capacity at medium sulfar loading of 1.8 mg cm(-2). Notably, ultrahigh volumetric capacity (1957 mAh cm(-3)) and high areal capacity (13.7 mAh cm(-2)) are synchronously achieved at a high sulfur loading of 13.8 mg cm(-2). The mechanism study of sulfur evolution during discharge process highlights the importance of the integration of MXene-based nanodots and nanosheets in Li-S batteries. This proposed methodology holds great promise for the development of various high-performance energy storage materials.
机译:纳米结构碳材料已广泛用于包封硫并改善锂 - 硫(Li-S)电池的循环稳定性,但高碳含量和低填充密度大大限制了它们的体积能密度。在此,我们呈现基于MXENE的TI3C2TX(T-X代表表面终端)纳米蛋白漂三的TI3C2TX纳米片(TCD-TCS),以实现高负载硫种类的空间固定化和转化。 TCD-TCS中的富表面极性位点增强了所得电极的结构完整性,而不存在碳基材料和导电添加剂导致阴极材料的高敲击密度。 TCD-TCS / S电极在1.8mg cm(-2)的中硫载荷中表现出几乎理论的放电容量。值得注意的是,超高容量(1957mAhcm(-3))和高的面积(13.7mAhcm(-2))同步地实现13.8mg cm(-2)的高硫负载。放电过程中硫进化的机制研究突出了蒙翅基纳米蛋白和纳米电池整合的重要性。这一提出的方法对于开发各种高性能储能材料具有很大的承担。

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