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Heterogeneous Structured Bi2S3/MoS2@NC Nanoclusters: Exploring the Superior Rate Performance in Sodium/Potassium Ion Batteries

机译:异构结构BI2S3 / MOS2 @ NC纳米纳米液:探索钠/钾离子电池的优越速率性能

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摘要

Bismuth-based materials have attracted increasing attention in the research field of sodium/potassium-ion batteries owing to the high theoretical capacity. Unfortunately, the large volume variation and poor electrical conductivity limit their electrochemical performance and applications. Herein, we report a composite of heterostructured Bi2S3/MoS2 encapsulated in nitrogen-doped carbon shell (BMS@NC) obtained by a solvothermal reaction as a novel anode material for sodium/potassium-ion batteries. The coating of the carbon layer could effectively relieve structural strains stemmed from the large volume change and improve electrical conductivity. More importantly, by skillfully constructing the heterostructure, an internal electric field formed on the heterointerface provides a rapid diffusion of ion and charge. As a consequence, the BMS@NC composite showed an excellent electrochemical performance for both sodium-ion batteries (a capacity of 381.5 mA h g(-1) achieved at a current density of 5.0 A g(-1) and 412 mA h g(-1) at 0.5 A g(-1) after 400 cycles) and potassium-ion batteries (a high specific capacity of 382.8 mA h g(-1) achieved after 100 cycles at 0.1 A g(-1)). The design of the Bi2S3/MoS2 heterostructure provides an effective strategy to develop energy storage materials with good electrochemical properties.
机译:由于高理论能力,基于铋的材料引起了钠/钾离子电池的研究领域的关注。不幸的是,大体积变化和电导率差限制了它们的电化学性能和应用。在此,我们报告了通过作为钠/钾离子电池的新型阳极材料,其包封在氮掺杂的碳壳(BMS @ NC)中的异质缓解BI2S3 / MOS2的复合物。碳层的涂层可以有效地缓解源于大体积变化的结构菌株并改善电导率。更重要的是,通过巧妙地构建异质结构,形成在异色面上的内部电场提供了离子和电荷的快速扩散。因此,BMS @ NC复合材料对钠离子电池(容量为381.5 mA Hg(-1)的电流密度为5.0ag(-1)和412 ma hg( - 1)在400次循环后的0.5Ag(-1),钾离子电池(高比率为382.8 mA Hg(-1),在0.1Ag(-1)时达到100次循环。 Bi2S3 / MOS2异质结构的设计提供了一种具有良好电化学性质的能量储存材料的有效策略。

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