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Advanced Spectroelectrochemical Techniques to Study Electrode InterfacesWithin Lithium-Ion and Lithium-Oxygen Batteries

机译:先进的光谱电化学技术,用于研究电极界面锂离子和锂 - 氧气电池

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摘要

Lithium battery technologies have revolutionized mobile energy storage, but improvements in the technology are still needed. Critical to delivering new light weight, high capacity, safe devices is an improved understanding of the dynamic processes occurring at the electrode-electrolyte interfaces. Therefore, alongside advances in materials there has been a parallel progression in advanced characterization methods. Herein, recent developments for operando spectro-electrochemical techniques centered on Raman, infrared, and sum frequency generation are described within the context of lithium-ion and non-aqueous lithium-oxygen battery research. In particular, shell-isolated nanoparticles for enhanced Raman spectroscopy (SHINERS), surface-enhanced infrared absorption spectroscopy (SEIRAS), and near-field infrared are explained and critically evaluated, and future opportunities discussed. The aim is to introduce the wider community to the developing range of methodologies and tools now available in the hope that it encourages greater usage across the sector.
机译:锂电池技术已经彻底改变了移动储能,但仍然需要改进该技术。对提供新的重量轻,高容量,安全设备至关重要的是对电极 - 电解质接口发生的动态过程的改进了解。因此,与材料的进步一起,在先进的表征方法中存在平行进展。在此,在锂离子和非锂 - 氧电池研究的背景下描述了以拉曼,红外和和频率产生为中心的Operando光谱 - 电化学技术的最新开发。特别地,解释和临界评估和近场红外线的用于增强的拉曼光谱(闪射),表面增强的红外吸收光谱(Seiras)和近场红外线的壳体分离的纳米颗粒。目的是将更广泛的社区介绍到现有的方法和工具的发展范围,希望它鼓励整个行业的更多使用。

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