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高压辅助 X 射线诱导损伤作为一种新的化学和结构合成途径。

High-pressure-assisted X-ray-induced damage as a new route for chemical and structural synthesis.

机构信息

Department of Physics and Astronomy, University of Nevada Las Vegas (UNLV), 89154-4002 Las Vegas, Nevada, USA.

出版信息

Phys Chem Chem Phys. 2018 Jul 18;20(28):18949-18956. doi: 10.1039/c8cp02119h.

Abstract

X-ray induced damage has been known for decades and has largely been viewed as a tremendous nuisance. We, on the other hand, harness the highly ionizing and penetrating properties of hard X-rays to initiate novel decomposition and synthetic chemistry. Here, we show that powdered cesium oxalate monohydrate pressurized to ≤0.5 GPa and irradiated with X-rays of energies near the cesium K-edge undergoes molecular and structural transformations with one of the final products exhibiting a new type of bcc crystal structure that has previously not been observed. Additionally, based on cascades of ultrafast electronic relaxation steps triggered by the absorption of one X-ray photon, we propose a model explaining the X-ray induced damage of multitype bounded matter. As X-rays are ubiquitous, these results show promise in the preparation of novel compounds and novel structures that are inaccessible via conventional methods. They may offer insight into the formation of complex organic compounds in outer space.

摘要

X 射线诱导损伤已经存在了几十年,并且在很大程度上被视为一种巨大的麻烦。然而,我们利用硬 X 射线的高电离和穿透特性来引发新型分解和合成化学。在这里,我们展示了加压至≤0.5 GPa 的一水合草酸铯粉末在近铯 K 边能量的 X 射线辐照下会发生分子和结构转变,其中一种最终产物表现出以前未观察到的新型 bcc 晶体结构。此外,基于吸收一个 X 射线光子引发的超快电子弛豫级联,我们提出了一个解释多类型束缚物质的 X 射线诱导损伤的模型。由于 X 射线无处不在,这些结果有望用于制备通过传统方法无法获得的新型化合物和新型结构。它们可能为外太空中复杂有机化合物的形成提供启示。

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