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六氟异丙醇的微波光谱及含CF3-C-CF3基团分子的扭转行为

Microwave Spectrum of Hexafluoroisopropanol and Torsional Behavior of Molecules with a CF3-C-CF3 Group.

作者信息

Shahi Abhishek, Arunan Elangannan

机构信息

†Department of Inorganic and Physical Chemistry, Indian Institute of Science, Bangalore 560012, India.

出版信息

J Phys Chem A. 2015 Jun 4;119(22):5650-7. doi: 10.1021/acs.jpca.5b03240. Epub 2015 May 22.

Abstract

This paper presents the first microwave spectroscopic investigation on hexafluoroisopropanol (HFIP). A pulsed nozzle Fourier transform microwave spectrometer has been used to determine the rotational constants for HFIP as A = 2105.12166(18) MHz, B = 1053.99503(12) MHz, and C = 932.33959(13) MHz. In addition, five isotopologues of HFIP have been observed experimentally to determine the accurate structure of HFIP. The observed spectrum could be assigned to the most stable conformer of HFIP, called antiperiplanar. Available spectroscopic information and ab initio calculations on five prototype molecules helped in exploring the torsional behavior of molecules having a CF3-C-CF3 group. Two-dimensional potential energy surfaces have been analyzed for all molecules, which explained the presence/absence of doubling in the rotational transitions. With the help of natural bond orbital (NBO) analysis, reasons for the conformational preference of HFIP have been explained.

摘要

本文介绍了对六氟异丙醇(HFIP)的首次微波光谱研究。使用脉冲喷嘴傅里叶变换微波光谱仪测定了HFIP的转动常数,A = 2105.12166(18) MHz,B = 1053.99503(12) MHz,C = 932.33959(13) MHz。此外,通过实验观察了HFIP的五种同位素异构体,以确定HFIP的精确结构。观察到的光谱可归属于HFIP最稳定的构象异构体,称为反式共平面构象。关于五个原型分子的现有光谱信息和从头算计算有助于探索具有CF3-C-CF3基团的分子的扭转行为。对所有分子的二维势能面进行了分析,这解释了转动跃迁中加倍现象的存在与否。借助自然键轨道(NBO)分析,解释了HFIP构象偏好的原因。

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