Macleod Neil A, Butz Patrick, Simons John P, Grant Guy H, Baker Christopher M, Tranter George E
Chemistry Department, Physical and Theoretical Chemistry Laboratory, South Parks Road, Oxford, UK OX1 3QZ.
Phys Chem Chem Phys. 2005 Apr 7;7(7):1432-40. doi: 10.1039/b501098e.
A computational (ab initio and molecular dynamics) and experimental exploration of the relative importance of molecular conformation and explicit solvent effects on the electronic circular dichroism (ECD) of chiral molecules, is presented. The exploration includes an assessment of the validity of angular correlation (sector) rules linking ECD to molecular conformation. It is based upon studies of 1-(R) phenylethanol (including its Raman optical activity spectrum), the corresponding 'benchmark' base, 1-(R)-phenylethylamine and its protonated cation; their hydrated clusters in the gas phase; and their non-polar and aqueous solutions. Emphasis is placed on the influence of specific, hydrogen bonded interactions with the aqueous solvent. The theoretical validity of the (otherwise empirical) sector rule in the neutral molecules and in their specifically hydrated clusters has been established--but with a reversal of the 'historical' sign convention. Protonation of the amine leads to a breakdown of the conventional sector rule but the change in its ECD intensity can still be related to the side chain dihedral angular dependence of its rotatory strength, computed ab initio for its explicitly hydrated clusters. Comparisons between ECD spectra measured in aqueous and in hydrocarbon solutions and the results of molecular dynamics calculations for aqueous solutions at 300 K, identify solvent induced structural change as the principal determinant of their relative ECD spectral intensities. Further links connecting the structures and conformations of chiral molecules and their explicitly solvated clusters in the gas phase, to their structures and conformational populations in solution can be expected through measurement, ab initio computation and analysis of their vibrational, ROA spectra.
本文介绍了对手性分子的电子圆二色性(ECD)中分子构象和明确溶剂效应的相对重要性进行的计算(从头算和分子动力学)及实验探索。该探索包括评估将ECD与分子构象联系起来的角相关(扇形)规则的有效性。它基于对1-(R)-苯乙醇(包括其拉曼光学活性光谱)、相应的“基准”碱1-(R)-苯乙胺及其质子化阳离子的研究;它们在气相中的水合簇;以及它们的非极性和水溶液。重点在于与水性溶剂的特定氢键相互作用的影响。已确定(否则为经验性的)扇形规则在中性分子及其特定水合簇中的理论有效性——但“历史”符号约定发生了反转。胺的质子化导致传统扇形规则失效,但其ECD强度的变化仍可与旋转强度的侧链二面角依赖性相关,该依赖性是通过对其明确水合簇进行从头算计算得出的。在水性和烃类溶液中测得的ECD光谱与300K下水溶液的分子动力学计算结果之间的比较,确定溶剂诱导的结构变化是其相对ECD光谱强度的主要决定因素。通过对手性分子及其在气相中的明确溶剂化簇的振动、ROA光谱进行测量、从头算计算和分析,有望进一步将它们与溶液中的结构和构象群体联系起来。