Suppr超能文献

阴离子附近弱配位水分子的振动光谱动力学:四氟硼酸盐水溶液的第一性原理分子动力学模拟

Vibration Spectral Dynamics of Weakly Coordinating Water Molecules near an Anion: FPMD Simulations of an Aqueous Solution of Tetrafluoroborate.

作者信息

Biswas Sohag, Mallik Bhabani S

机构信息

Department of Chemistry , Indian Institute of Technology Hyderabad , Kandi, Sangareddy , 502 285 Telangana , India.

出版信息

J Phys Chem B. 2019 Mar 7;123(9):2135-2146. doi: 10.1021/acs.jpcb.9b00069. Epub 2019 Feb 27.

Abstract

The extent to which the ions affect the nearby water molecules will decide the structure-making or breaking nature of those ions in aqueous solutions. The effects of a weakly coordinating anion on the structure, dynamics, and vibrational properties of water molecules are not so significant as compared to an anion capable of making strong ion-water hydrogen bonds. The present work deals with the first-principles molecular dynamics study of an aqueous solution of such a weakly coordinating anion, tetrafluoroborate (BF), using dispersion-corrected DFT-based first-principles molecular dynamics (FPMD) simulations. Various structural, dynamical, and spectral properties, such as radial distribution functions (RDFs), rotational dynamics, vibrational density of states (VDOS), hydrogen bond as well as dangling OH autocorrelation functions, and residence dynamics, were calculated to investigate the effects of the anion on nearby water molecules. The process of spectral diffusion was assessed through a time series wavelet transformation of trajectories obtained from FPMD simulations. The first ion-water solvation shell extends up to 5.5 Å, containing around 20 water molecules. The lifetime of the ion-water hydrogen bond is found to be 1.19 ps, whereas the water-water hydrogen bond lifetime is found to be 1.13 ps. Inside the solvation shell, the persistence time of dangling OH chromophores and the average frequency of OH modes inside the solvation shell are found to be more compared to bulk. Three time scales are found for solvation shell OH modes from the frequency-frequency correlation function. A very short time scale is found for the intact ion-water interaction; the short time scale is for the ion-water hydrogen bond, and the long time scale is for escape dynamics of water molecules from the ion solvation shell. From the mean squared displacement, it is found that solvation water molecules diffuse slower than the bulk. However, solvation shell water molecules show faster relaxation from the analysis of rotational anisotropy. Within the longer time scale of spectral diffusion, this process (which is related to various dynamics of the molecules) is not yet complete, as compared to fast anisotropic decay. This fact is similar to the experimental finding of spectral diffusion and anisotropy time scales in the aqueous solution of borohydride anion. The calculated results are also compared with available experimental data wherever possible.

摘要

离子对附近水分子的影响程度将决定这些离子在水溶液中的结构形成或破坏性质。与能够形成强离子 - 水氢键的阴离子相比,弱配位阴离子对水分子的结构、动力学和振动性质的影响并不显著。本工作使用基于色散校正密度泛函理论(DFT)的第一性原理分子动力学(FPMD)模拟,对这种弱配位阴离子四氟硼酸根(BF)的水溶液进行了第一性原理分子动力学研究。计算了各种结构、动力学和光谱性质,如径向分布函数(RDFs)、旋转动力学、振动态密度(VDOS)、氢键以及悬垂OH自相关函数和停留动力学,以研究阴离子对附近水分子的影响。通过对FPMD模拟获得的轨迹进行时间序列小波变换来评估光谱扩散过程。第一个离子 - 水溶剂化壳层延伸至5.5 Å,包含约20个水分子。发现离子 - 水氢键的寿命为1.19 ps,而水 - 水氢键的寿命为1.13 ps。在溶剂化壳层内,发现悬垂OH发色团的持续时间和溶剂化壳层内OH模式的平均频率比本体中的更多。从频率 - 频率相关函数中发现溶剂化壳层OH模式有三个时间尺度。发现完整的离子 - 水相互作用有一个非常短的时间尺度;短时间尺度是关于离子 - 水氢键的,长时间尺度是关于水分子从离子溶剂化壳层逃逸的动力学的。从均方位移发现,溶剂化水分子的扩散比本体慢。然而,从旋转各向异性分析来看,溶剂化壳层水分子显示出更快的弛豫。在光谱扩散较长的时间尺度内,与快速各向异性衰减相比,这个过程(与分子的各种动力学相关)尚未完成。这一事实与硼氢化物阴离子水溶液中光谱扩散和各向异性时间尺度的实验发现相似。只要有可能,计算结果也会与现有的实验数据进行比较。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验