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锂硫电池及其组件的X射线吸收近边结构和核磁共振研究。

X-ray absorption near-edge structure and nuclear magnetic resonance study of the lithium-sulfur battery and its components.

作者信息

Patel Manu U M, Arčon Iztok, Aquilanti Giuliana, Stievano Lorenzo, Mali Gregor, Dominko Robert

机构信息

National Institute of Chemistry, Hajdrihova 19, 1000 Ljubljana (Slovenia), Fax: (+386) 14730300.

出版信息

Chemphyschem. 2014 Apr 4;15(5):894-904. doi: 10.1002/cphc.201300972. Epub 2014 Feb 4.

Abstract

Understanding the mechanism(s) of polysulfide formation and knowledge about the interactions of sulfur and polysulfides with a host matrix and electrolyte are essential for the development of long-cycle-life lithium-sulfur (Li-S) batteries. To achieve this goal, new analytical tools need to be developed. Herein, sulfur K-edge X-ray absorption near-edge structure (XANES) and (6,7) Li magic-angle spinning (MAS) NMR studies on a Li-S battery and its sulfur components are reported. The characterization of different stoichiometric mixtures of sulfur and lithium compounds (polysulfides), synthesized through a chemical route with all-sulfur-based components in the Li-S battery (sulfur and electrolyte), enables the understanding of changes in the batteries measured in postmortem mode and in operando mode. A detailed XANES analysis is performed on different battery components (cathode composite and separator). The relative amounts of each sulfur compound in the cathode and separator are determined precisely, according to the linear combination fit of the XANES spectra, by using reference compounds. Complementary information about the lithium species within the cathode are obtained by using (7) Li MAS NMR spectroscopy. The setup for the in operando XANES measurements can be viewed as a valuable analytical tool that can aid the understanding of the sulfur environment in Li-S batteries.

摘要

了解多硫化物的形成机制以及硫和多硫化物与主体基质和电解质之间的相互作用对于长循环寿命锂硫(Li-S)电池的开发至关重要。为实现这一目标,需要开发新的分析工具。在此,报道了对锂硫电池及其硫成分进行的硫K边X射线吸收近边结构(XANES)和(6,7)Li魔角旋转(MAS)核磁共振研究。通过化学路线合成锂硫电池(硫和电解质)中基于全硫成分的硫和锂化合物(多硫化物)的不同化学计量混合物,能够理解在死后模式和原位模式下测量的电池变化。对不同电池组件(阴极复合材料和隔膜)进行了详细的XANES分析。通过使用参考化合物,根据XANES光谱的线性组合拟合,精确确定阴极和隔膜中每种硫化合物的相对含量。通过使用(7)Li MAS核磁共振光谱获得了关于阴极内锂物种的补充信息。原位XANES测量装置可被视为一种有价值的分析工具,有助于理解锂硫电池中的硫环境。

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