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Obtaining the structure and bond rotational potential of a substituted ethane by NMR spectroscopy of solutions in nematic liquid-crystalline solvents

机译:通过向列型液晶溶剂中溶液的NMR光谱获得取代乙烷的结构和键旋转势

摘要

Partially averaged dipolar couplings (also referred to as residual dipolar couplings) D-ij can be obtained from the analysis of the NMR spectra of molecules dissolved in liquid-crystalline solvents. Their values for a nonrigid molecule depend upon the bond lengths and angles, the rotational potentials, and the orientational order of the molecules. The molecule studied, 1-chloro-2-bromoethane, is one of the simplest example of a substituted alkane in which the rotational potential has three minimum-energy positions, trans and gauche +/- conformations, and the present investigation explores the problems inherent in deriving the form of the potential and the molecular geometry from the set of partially averaged couplings between the protons, and between protons and $^{13}C$ nuclei. The geometrical parameters and the rotational potential obtained are compared with the results from a density-functional theory method.
机译:可以通过分析溶解在液晶溶剂中的分子的NMR光谱来获得部分平均的偶极耦合(也称为残留偶极耦合)D-ij。它们对于非刚性分子的值取决于键的长度和角度,旋转电位以及分子的取向顺序。所研究的分子1-氯-2-溴乙烷是取代烷烃的最简单实例之一,在该烷烃中,旋转势具有三个最小能量位置,即反式和gauche +/-构象,本研究探讨了固有的问题。从质子之间以及质子与$ ^ {13} C $核之间的部分平均耦合的集合中得出势的形式和分子几何形状。将获得的几何参数和旋转电势与密度泛函理论方法的结果进行比较。

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