The effect of lithium triflate and lithium bromide on the vibrational frequencies of DMEDA

PhysChemComm Pub Date : 2002-01-01 DOI:10.1039/B204103K
Shawna S. York, Scott E. Boesch, R. Wheeler, R. Frech
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引用次数: 4

Abstract

An experimental and computational investigation of the structures and vibrational frequencies of N,N′-dimethylethylenediamine–lithium triflate (DMEDA–LiTf; Tf – = CF 3 SO 3 – ) has been done using a combination of hybrid Hartree–Fock/density functional calculations and Raman and IR spectroscopy. Band assignments for DMEDA–LiBr were made by comparing the experimental Raman and IR spectra of a 5 ∶ 1 DMEDA–LiBr sample with the calculated vibrational frequencies of the DMEDA–Li + and DMEDA–LiBr complexes. Band assignments for DMEDA–LiTf were made by comparing the experimental spectra of samples over a composition range of 20 ∶ 1 to 1.5 ∶ 1 with calculations done on the DMEDA–LiTf complexes. The effect of the lithium cation and lithium triflate on the geometries and vibrational frequencies of the DMEDA will be examined. The combined experimental data and computational results clearly show that the intramolecular hydrogen bonding in pure DMEDA is broken upon addition of lithium bromide or lithium triflate.
三酸锂和溴化锂对DMEDA振动频率的影响
N,N ' -二甲基乙二胺-三酸锂(DMEDA-LiTf;使用混合Hartree-Fock /密度泛函计算和拉曼光谱和红外光谱的组合来完成Tf - = cf3so3 -)。将5∶1 DMEDA-LiBr样品的实验拉曼光谱和红外光谱与计算得到的DMEDA-Li +和DMEDA-LiBr配合物的振动频率进行比较,对DMEDA-LiBr进行波段分配。通过比较样品在20∶1 ~ 1.5∶1的组成范围内的实验光谱与DMEDA-LiTf配合物的计算,确定了DMEDA-LiTf的波段配位。将研究锂离子和三酸锂对DMEDA几何形状和振动频率的影响。结合实验数据和计算结果清楚地表明,在纯DMEDA中加入溴化锂或三酸锂后,分子内氢键被破坏。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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