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光电子圆二色性中的构象效应

Conformational effects in photoelectron circular dichroism.

作者信息

Turchini S

机构信息

Istituto di Struttura della Materia-CNR (ISM-CNR), Via del Fosso del Cavaliere 100, 00133 Roma, Italy.

出版信息

J Phys Condens Matter. 2017 Dec 20;29(50):503001. doi: 10.1088/1361-648X/aa9730.

DOI:10.1088/1361-648X/aa9730
PMID:29087356
Abstract

Photoelectron circular dichroism (PECD) is a novel type of spectroscopy, which presents surprising sensitivity to conformational effects in chiral systems. While classical photoelectron spectroscopy mainly responds to conformational effects in terms of energy level shifts, PECD provides a rich and detailed response to tiny changes in electronic and structural properties by means of the intensity dispersion of the circular dichroism as a function of photoelectron kinetic energy. In this work, the basics of PECD will be outlined, emphasizing the role of interference from the [Formula: see text] outgoing partial wave of the photoelectron in the PECD transition matrix element, which is responsible for the extreme sensitivity to conformational effects. Examples using molecular systems and interfaces will shed light on the powerful application of PECD to classical conformational effects such as group substitution, isomerism, conformer population and clustering. Moreover, the PECD results will be reported in challenging new fields where conformations play a key role, such as vibrational effects, transient chirality and time- resolved experiments. To date, PECD has mostly been based on synchrotron radiation facilities, but it also has a future as a table-top lab experiment by means of multiphoton ionization. An important application of PECD as an analytical tool will be reported. The aim of this review is to illustrate that in PECD, the presence of conformational effects is essential for understanding a wide range of effects from a new perspective, making it different from classical spectroscopy.

摘要

光电子圆二色性(PECD)是一种新型光谱学,它对手性体系中的构象效应表现出惊人的敏感性。经典光电子能谱主要通过能级移动来响应构象效应,而PECD则通过作为光电子动能函数的圆二色性强度色散,对电子和结构性质的微小变化提供丰富而详细的响应。在这项工作中,将概述PECD的基本原理,强调光电子的[公式:见原文]出射分波干涉在PECD跃迁矩阵元中的作用,这一作用导致了对构象效应的极高敏感性。使用分子体系和界面的实例将阐明PECD在诸如基团取代、异构现象、构象异构体丰度和聚集等经典构象效应方面的强大应用。此外,还将报道PECD在构象起关键作用的具有挑战性的新领域中的结果,如振动效应、瞬态手性和时间分辨实验。迄今为止,PECD大多基于同步辐射设施,但通过多光子电离作为台式实验室实验也具有前景。将报道PECD作为一种分析工具的重要应用。本综述的目的是说明,在PECD中,构象效应的存在对于从新的角度理解广泛的效应至关重要,这使其有别于经典光谱学。

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