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首页> 外文期刊>Angewandte Chemie >Following a Photoinduced Reconstructive Phase Transformation and its Influence on the Crystal Integrity: Powder Diffraction and Theoretical Study
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Following a Photoinduced Reconstructive Phase Transformation and its Influence on the Crystal Integrity: Powder Diffraction and Theoretical Study

机译:光诱导重建相变及其对晶体完整性的影响:粉末衍射和理论研究

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摘要

In the course of solid-state photoreactions, a single crystal (SC) of the reactant can be transformed into an SC of the product or it can lose crystallinity and become amorphous. In-between these two scenarios exist the reconstructive phase transformations, where upon irradiation, the reactant SC becomes a powder or an SC with increased mosaicity. We present a detailed description of reconstructive photodimeri-zation, where the structural changes are directly correlated with the disintegration process. The kinetics of the reaction is explained by two kinetic regimes, forming an autocatalytic autoinhibition photoreaction set with high quantum yield. In addition, the photoreaction pathways were studied theoretically.
机译:在固态光反应过程中,反应物的单晶(SC)可以转变为产物的SC,或者它会失去结晶度并变为非晶态。在这两种情况之间存在重构相变,在辐照下,反应物SC变成粉末或镶嵌性增强的SC。我们提出了重建光二聚化的详细描述,其中结构变化与崩解过程直接相关。反应的动力学由两个动力学机制解释,形成了具有高量子产率的自催化自抑制光反应装置。另外,从理论上研究了光反应途径。

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