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首页> 外文期刊>Spectrochimica acta, Part A. Molecular and biomolecular spectroscopy >ATR-far-ultraviolet spectroscopy in the condensed phase?The present status and future perspectives
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ATR-far-ultraviolet spectroscopy in the condensed phase?The present status and future perspectives

机译:ATR-FAR-Ultraviolet光谱在凝聚相中?现状和未来的观点

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Far-ultraviolet (FUV) spectroscopy in the region of 140?200 nm of condensed-phase has received keen interest as a new electronic spectroscopy. The introduction of the attenuated total reflection (ATR) technique to the FUV region has opened a new avenue for FUV spectroscopy of liquids and solids. ATR-FUV spectroscopy enables the study of electronic structures and transitions of most types of molecules. It also holds great promise for a variety of applications, i.e., from the application to basic sciences to practical applications. In this review, the characteristics and advantages of ATR-FUV spectroscopy in the condensed phase are described first; then, a brief historical overview is provided. Next, the ATR-FUV spectroscopy instrumentation is outlined. After these introductory parts, a variety of AFT-FUV spectroscopy applications are introduced, starting from applications to investigations of electronic structure and transitions of alkanes, graphenes, and polymers. Then, time-resolved ATR-FUV spectroscopy is discussed. The applications to materials research, such as the research on inorganic semiconductors and ionic liquids, follow. In the last part, the FUV spectroscopy perspective is emphasized.
机译:140°范围内的远紫外(FUV)光谱?200纳米凝聚相作为一种新的电子光谱学受到了广泛的关注。衰减全反射(ATR)技术的引入为液体和固体的FUV光谱研究开辟了一条新途径。ATR-FUV光谱能够研究大多数类型分子的电子结构和跃迁。它还具有广泛的应用前景,从应用到基础科学再到实际应用。本文首先介绍了凝聚相ATR-FUV光谱的特点和优点;然后,简要介绍了历史概况。接下来,介绍ATR-FUV光谱仪。在这些介绍部分之后,介绍了AFT-FUV光谱的各种应用,从应用到研究烷烃、石墨烯和聚合物的电子结构和转变。然后,讨论了时间分辨ATR-FUV光谱。在材料研究中的应用,如无机半导体和离子液体的研究,如下。最后一部分重点介绍了FUV光谱学的发展前景。

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