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介绍一种标准方法,用于实验测定溶液体系中激光泵浦、X 射线探针时间分辨广角 X 射线散射实验中的溶剂响应。

Introducing a standard method for experimental determination of the solvent response in laser pump, X-ray probe time-resolved wide-angle X-ray scattering experiments on systems in solution.

机构信息

Centre for Molecular Movies, Niels Bohr Institute, University of Copenhagen, København Ø, Denmark.

出版信息

Phys Chem Chem Phys. 2013 Sep 28;15(36):15003-16. doi: 10.1039/c3cp50751c.

Abstract

In time-resolved laser pump, X-ray probe wide-angle X-ray scattering experiments on systems in solution the structural response of the system is accompanied by a solvent response. The solvent response is caused by reorganization of the bulk solvent following the laser pump event, and in order to extract the structural information of the solute, the solvent response has to be treated. Methodologies capable of doing so include both theoretical modelling and experimental determination of the solvent response. In the work presented here, we have investigated how to obtain a reproducible solvent response-the solvent term-experimentally when applying laser pump, X-ray probe time-resolved wide-angle X-ray scattering. The solvent term describes difference scattering arising from the structural response of the solvent to changes in the hydrodynamic parameters: pressure, temperature and density. We present results based on NIR and dye mediated solvent heating, and demonstrate that the solvent response is independent of the heating method. The NIR heating is shown to be rendered unusable by higher order effects under certain experimental conditions, while the dye mediated solvent heating is demonstrated to exhibit first order behaviour with respect to the amount of energy deposited in the solution. We introduce a standardized method for recording solvent responses in laser pump, X-ray probe time-resolved X-ray wide-angle scattering experiments by using dye mediated solvent heating. Furthermore, we have generated a library of solvent terms, which can be used to describe the solvent term in any TRWAXS experiment, and made it available online.

摘要

在时间分辨激光泵浦、X 射线探针广角 X 射线散射实验中,溶液体系的结构响应伴随着溶剂响应。溶剂响应是由激光泵浦事件后溶剂的重组引起的,为了提取溶质的结构信息,必须处理溶剂响应。能够做到这一点的方法包括理论建模和溶剂响应的实验确定。在本工作中,我们研究了当应用激光泵浦、X 射线探针时间分辨广角 X 射线散射时,如何获得可重现的溶剂响应——溶剂项。溶剂项描述了由于溶剂的结构响应导致的流体力学参数(压力、温度和密度)变化引起的差异散射。我们基于近红外和染料介导的溶剂加热呈现了结果,并证明了溶剂响应与加热方法无关。在某些实验条件下,近红外加热由于高阶效应而变得不可用,而染料介导的溶剂加热则表现出与溶液中沉积的能量量呈一阶关系。我们通过使用染料介导的溶剂加热,引入了一种在激光泵浦、X 射线探针时间分辨 X 射线广角散射实验中记录溶剂响应的标准化方法。此外,我们生成了一个溶剂项库,可用于描述任何 TRWAXS 实验中的溶剂项,并将其在线提供。

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