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用X射线光电子能谱探测铜水溶液中水分子偶极矩取向的指纹图谱

Fingerprint of Dipole Moment Orientation of Water Molecules in Cu Aqueous Solution Probed by X-ray Photoelectron Spectroscopy.

作者信息

Mosaferi Mohammadreza, Céolin Denis, Rueff Jean-Pascal, Selles Patricia, Odelius Michael, Björneholm Olle, Öhrwall Gunnar, Carniato Stéphane

机构信息

Laboratoire de Chimie Physique, Matière et Rayonnement, UMR 7614, Sorbonne Université, 4 Place Jussieu, 75231 Paris Cedex 05, France.

Synchrotron SOLEIL, L'Orme des Merisiers, BP 48, St Aubin, 91192 Gif sur Yvette, France.

出版信息

J Am Chem Soc. 2024 Apr 10;146(14):9836-9850. doi: 10.1021/jacs.3c14570. Epub 2024 Mar 28.

Abstract

The electronic structure and geometrical organization of aqueous Cu have been investigated by using X-ray photoelectron spectroscopy (XPS) at the Cu L-edge combined with state-of-the-art ab initio molecular dynamics and a quantum molecular approach designed to simulate the Cu 2p X-ray photoelectron spectrum. The calculations offer a comprehensive insight into the origin of the main peak and satellite features. It is illustrated how the energy drop of the Cu 3d levels (≈7 eV) following the creation of the Cu 2p core hole switches the nature of the highest singly occupied molecular orbitals (MOs) from the dominant metal to the dominant MO nature of water. It is particularly revealed how the repositioning of the Cu 3d levels induces the formation of new bonding (B) and antibonding (AB) orbitals, from which shakeup mechanisms toward the relaxed H-SOMO operate. As highlighted in this study, the appearance of the shoulder near the main peak corresponds to the characteristic signature of shakeup intraligand (1a → H-SOMO(1b)) excitations in water, providing insights into the average dipole moment distribution (≈36°) of the first-shell water molecules surrounding the metal ion and its direct impact on the broadening of the satellite. It is also revealed that the main satellite at 8 eV from the main peak corresponds to (metal/1b → H-SOMO(1b) of water) excitations due to a bonding/antibonding (B/AB) interaction of Cu 3d levels with the deepest valence O2p/H1s 1b orbitals of water. This finding underscores the sensitivity of XPS to the electronic structure and orientation of the nearest water molecules around the central ion.

摘要

通过在铜L边使用X射线光电子能谱(XPS),结合最先进的从头算分子动力学和一种旨在模拟铜2p X射线光电子能谱的量子分子方法,研究了水合铜的电子结构和几何结构。这些计算为主要峰和卫星特征的起源提供了全面的见解。阐述了在产生铜2p芯孔后,铜3d能级(≈7 eV)的能量下降如何将最高单占据分子轨道(MOs)的性质从占主导的金属性质转变为占主导的水的MO性质。特别揭示了铜3d能级的重新定位如何诱导新的成键(B)和反键(AB)轨道的形成,由此产生向弛豫的H-SOMO的振激机制。正如本研究中所强调的,主峰附近肩峰的出现对应于水中振激配体内(1a→H-SOMO(1b))激发的特征信号,为围绕金属离子的第一壳层水分子的平均偶极矩分布(≈36°)及其对卫星峰展宽的直接影响提供了见解。还揭示了距主峰8 eV处的主要卫星峰对应于由于铜3d能级与水最深价态O2p/H1s 1b轨道的成键/反键(B/AB)相互作用而产生的(金属/1b→水的H-SOMO(1b))激发。这一发现强调了XPS对中心离子周围最近水分子的电子结构和取向的敏感性。

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