Investigation of the electronic states of water in hydrate-melt using attenuated total reflectance far-ultraviolet spectroscopy

Y. Morisawa, Nami Ueno
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Abstract

FUV spectroscopy in the 145-200 nm region has recently been a matter of intense interest because many kinds of materials in the condensed phase. Rapid progress of the studies has been introduced by the development of attenuated total reflection spectroscopy in the FUV region (ATR-FUV), which has enabled us to measure the spectra in the complete FUV region for liquid and solid samples without facing problems such as peak saturation. Moreover, significant progresses of quantum chemical calculations for electronic excitation states of molecules improve our interpretations of the FUV spectra. We will present an investigation about the FUV spectroscopy for aqueous solutions of highly concentrated alkali-metal salts, named hydrate-melt which can be used as high-performance electrolytes.
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用衰减全反射远紫外光谱研究水合物熔体中水的电子态
在145- 200nm区域的FUV光谱最近引起了人们的强烈兴趣,因为许多种类的材料处于凝聚态。紫外波段衰减全反射光谱技术(ATR-FUV)的发展使研究取得了快速进展,使我们能够测量液体和固体样品在整个紫外波段的光谱,而不会遇到峰饱和等问题。此外,分子电子激发态量子化学计算的重大进展也提高了我们对紫外光谱的解释。本文研究了可作为高性能电解质的水合熔体的高浓度碱金属盐水溶液的紫外光谱。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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