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首页> 外文期刊>ACS nano >Layer-Spacing-Enlarged MoS2 Superstructural Nanotubes with Further Enhanced Catalysis and Immobilization for Li-S Batteries
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Layer-Spacing-Enlarged MoS2 Superstructural Nanotubes with Further Enhanced Catalysis and Immobilization for Li-S Batteries

机译:层间距扩大MOS2上部结构纳米管,具有进一步增强的LI-S电池的催化和固定化

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摘要

A layer-spacing-enlarged MoS2 nanotube (LE-MoS2) consisting of hierarchical superstructural nanosheets (-MoS2-carbon layer-MoS2-) was fabricated and served as the sulfur host. The (002) lattice plane of LE-MoS2 is greatly expanded to 1.04 nm and 67.7% higher than that of the conventional 2H-MoS2. Benefitting from the layer-spacing-enlarged hierarchical superstructure of LE-MoS2, the catalytic effect on the S-(s)-Li2Sx (soluble, x > 6)-Li2Sy (soluble, y > 2)-Li2S(s) phase transformation kinetics and immobilizing effect on the soluble Li2Sy in Li-S batteries are both further enhanced and demonstrated by in situ X-ray adsorption near-edge structure spectroscopy and first-principles calculations. The formation of hierarchical superstructural nanosheets was carefully investigated by customized synchrotron vacuum ultraviolet photoionization mass spectrometry.
机译:由层间结构纳米片(-MOS2-碳层-MOS2-)组成的层间距扩大的MOS2纳米管(LE-MOS2)并用作硫宿主。 LE-MOS2的(002)晶格平面大大扩展至比传统2H-MOS2高的1.04nm和67.7%。 从Le-MOS2的层间间隔扩大的层次结构中受益,对S-(S)-LI2SX(可溶性,X> 6)-LI2ssy(可溶性,Y> 2)-LI2S相变的催化作用 通过原位X射线吸附近边缘结构光谱和第一原理计算,对Li-S电池中可溶性Li2的动力学和固定效应进一步增强和证明。 通过定制的同步紫外线紫外线光相光谱测定仔细研究了层次上部结构纳米片的形成。

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