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通过共振分子间库仑衰变探测溶剂化壳层。

The solvation shell probed by resonant intermolecular Coulombic decay.

作者信息

Dupuy Rémi, Buttersack Tillmann, Trinter Florian, Richter Clemens, Gholami Shirin, Björneholm Olle, Hergenhahn Uwe, Winter Bernd, Bluhm Hendrik

机构信息

Fritz-Haber-Institut der Max-Planck-Gesellschaft, Faradayweg 4-6, 14195, Berlin, Germany.

Sorbonne Université, CNRS, Laboratoire de Chimie Physique - Matiere et Rayonnement, LCPMR, F-75005, Paris Cedex 05, France.

出版信息

Nat Commun. 2024 Aug 13;15(1):6926. doi: 10.1038/s41467-024-51417-3.

Abstract

Molecules involved in solvation shells have properties differing from those of the bulk solvent, which can in turn affect reactivity. Among key properties of these molecules are their nature and electronic structure. Widely used tools to characterize this type of property are X-ray-based spectroscopies, which, however, usually lack the capability to selectively probe the solvation-shell molecules. A class of X-ray triggered "non-local" processes has the recognized potential to provide this selectivity. Intermolecular Coulombic decay (ICD) and related processes involve neighbouring molecules in the decay of the X-ray-excited target, and are thus naturally sensitive to its immediate environment. Applying electron spectroscopy to aqueous solutions, we explore the resonant flavours of ICD and demonstrate how it can inform on the first solvation shell of excited solvated cations. One particular ICD process turns out to be a potent marker of the formation of ion pairs. Another gives a direct access to the electron binding energies of the water molecules in the first solvation shell, a quantity previously elusive to direct measurements. The resonant nature of the processes makes them readily measurable, providing powerful new spectroscopic tools.

摘要

参与溶剂化壳层的分子具有与本体溶剂不同的性质,这反过来又会影响反应活性。这些分子的关键性质包括它们的性质和电子结构。用于表征这类性质的广泛使用的工具是基于X射线的光谱学,然而,这类光谱学通常缺乏选择性探测溶剂化壳层分子的能力。一类X射线触发的“非局部”过程具有提供这种选择性的公认潜力。分子间库仑衰变(ICD)及相关过程在X射线激发靶的衰变过程中涉及相邻分子,因此对其直接环境自然敏感。将电子能谱应用于水溶液,我们探索了ICD的共振特征,并展示了它如何能够揭示激发态溶剂化阳离子的第一溶剂化壳层信息。一个特定的ICD过程被证明是离子对形成的有力标记。另一个过程则可以直接获取第一溶剂化壳层中水分子的电子结合能,这是一个以前难以直接测量的量。这些过程的共振性质使它们易于测量,从而提供了强大的新光谱工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7ae2/11322543/e24a083e94c8/41467_2024_51417_Fig1_HTML.jpg

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