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钠离子气相络合物中键合性质的实验与从头算研究。

An experimental and Ab initio study of the nature of the binding in gas-phase complexes of sodium ions.

作者信息

McMahon TB, Ohanessian G

机构信息

Laboratoire des Mecanismes Reactionnels, UMR 7651 du CNRS, Ecole Polytechnique, Palaiseau, France.

出版信息

Chemistry. 2000 Aug 18;6(16):2931-41. doi: 10.1002/1521-3765(20000818)6:16<2931::aid-chem2931>3.0.co;2-7.

DOI:10.1002/1521-3765(20000818)6:16<2931::aid-chem2931>3.0.co;2-7
PMID:10993254
Abstract

Fourier transform ion cyclotron resonance (FT-ICR) ligand exchange equilibrium experiments have been used to establish a relative scale of sodium binding free energies of about fifty organic molecules. Ab initio calculations yield accurate enthalpies and entropies of complexation for a new set of 30 molecules. These calculations establish an absolute basis for the relative experimental free energy scale. In addition, they provide structural information for the complexes which permits considerable insight into the nature of sodium ion binding. We found that when the binding site is a first row atom, the sodium ion aligns with the molecular dipole axis in order to maximize charge-dipole electrostatic interactions. Strong deviations from this behavior occur when the ion is attached to a heavier atom such as sulfur, chlorine or bromine. For flexible molecules such as the isomers of butyl chloride, there are several isomers of low energy, and differences exist between the enthalpy and free energy orders of stability. Finally, sodium ion affinities have been obtained for several aromatic molecules which lend support to the importance of charge-quadrupole interactions in such cation-pi complexes.

摘要

傅里叶变换离子回旋共振(FT - ICR)配体交换平衡实验已被用于建立约五十种有机分子钠结合自由能的相对尺度。从头算计算得出了一组新的30种分子络合的精确焓和熵。这些计算为相对实验自由能尺度建立了绝对基础。此外,它们为络合物提供了结构信息,从而能够深入了解钠离子结合的本质。我们发现,当结合位点是第一排原子时,钠离子会与分子偶极轴对齐,以最大化电荷 - 偶极静电相互作用。当离子与较重的原子如硫、氯或溴相连时,会出现明显偏离这种行为的情况。对于诸如丁基氯异构体这样的柔性分子,存在几种低能量异构体,并且焓和自由能稳定性顺序之间存在差异。最后,已获得几种芳香分子的钠离子亲和力,这支持了电荷 - 四极相互作用在此类阳离子 - π络合物中的重要性。

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