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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Vibrations tell the tale. A time-resolved mid-infrared perspective of the photochemistry of iron complexes
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Vibrations tell the tale. A time-resolved mid-infrared perspective of the photochemistry of iron complexes

机译:振动告诉故事。 一种时间解决的铁复合物的光化学中红外视角

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Owing to its superb structure-specificity, time-resolved infrared spectroscopy (TR-IR) has emerged in recent years as one of the most powerful tools for the exploration of photochemical dynamics in solution. It can be carried out in two distinct modes of operation: real-time Fourier-transform spectroscopy following flash photolysis or purely laser-based pump-probe spectroscopy. These two approaches combine to access nearly seamlessly a time window ranging from around hundred femtoseconds all the way up to hundreds of seconds. In this article, we highlight the most recent applications of these techniques in temporally resolving the multiscalar photochemical dynamics of iron complexes. The processes of interest here entail ligand dissociations or fragmentations, which lead to the formation of unique Fe-containing intermediates with remarkable electronic structure, exceptional molecular geometry, or unprecedented chemical reactivity. Thus, TR-IR can provide a novel unexpected view into the realm of iron chemistry including such fascinating topics like high-valent iron, ferracyclic compounds, or carbon dioxide binding to iron centers.
机译:由于其精细的结构特异性,近年来出现了时间分辨的红外光谱(TR-IR)作为探索解决方案中光化学动态的最强大的工具之一。它可以以两种不同的操作模式进行:闪光光解或纯激光基泵探针光谱后的实时傅立叶变换光谱。这两种方法结合了几乎无缝的时间窗口,从大约百小八十秒一直到数百秒。在本文中,我们突出了这些技术的最新应用在时间上分辨铁复合物的MultiScalar光化学动态。这里的利息过程需要配体解剖或片段化,这导致形成独特的含Fe的中间体,具有显着的电子结构,卓越的分子几何形状或前所未有的化学反应性。因此,TR-IR可以提供一种新颖的意想不到视图成铁化学的包括这种引人入胜的主题,例如高原子价铁,ferracyclic化合物,或二氧化碳结合铁中心的领域。

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