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EFFECTS OF SOLVATION ON CHEMICAL BONDING - AN ELECTRON-FLOW ANALYSIS

机译:溶剂化对化学键合的影响-电子流分析

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Effects of nonspecific solvation on chemical bonding, described with a simple self-consistent reaction field model, are rigorously analyzed in terms of electron flow and electronegativity equalization between two molecular fragments A and B. In most (but not all) systems AB, the energy-lowering rise in the dipole moment that accompanies solvation is the result of an enhanced charge transfer between A and B, the enhancement stemming from both the increased electronegativity difference Delta(chi AB) and the decreased bond hardness kappa(AB). In systems, such as H . Cl, H . CN, and CH3 . CN, that ensue from interactions between charged closed-shell fragments (H++Cl-, H++CN-, CH3++CN-, etc.) the energy-stabilizing effect of solvation is a trade-off between the energy lowering due to the enhanced charge-transfer component of bonding and destabilization due to diminished covalent bonding. On the other hand, interactions between electrically neutral fragments.(NH3+SO3, etc.) produce systems, such as the zwitterion of sulfamic acid ((H3N)-H-+ . SO3-), in which charge-transfer and covalent components of bonding are strengthened in tandem by solvation. The aforementioned phenomena account for the experimentally observed solvation-induced changes in the A-B bonds, namely their lengthening (or even a complete dissociation) in the former systems and shortening in the latter ones. (C) 1995 American Institute of Physics. [References: 32]
机译:用简单的自洽反应场模型描述了非特异性溶剂化对化学键合的影响,并根据两个分子片段A和B之间的电子流和电负性均等化进行了严格分析。在大多数(但不是全部)系统AB中,能量伴随溶剂化的偶极矩的降低是A和B之间电荷转移增强的结果,这种增强是由于电负性差Delta(chi AB)增大和键合硬度kappa(AB)减小引起的。在系统中,例如H。 Cl,H。 CN和CH3。 CN,是由于带电的闭壳片段(H ++ Cl-,H ++ CN-,CH3 ++ CN-等)之间的相互作用而产生的,溶剂化的能量稳定作用是能量降低之间的权衡由于增强了键合的电荷转移成分,以及由于减少了共价键合而导致的不稳定。另一方面,电中性片段(NH3 + SO3等)之间的相互作用产生了系统,例如氨基磺酸的两性离子((H3N)-H- + SO3-),其中电荷转移和共价组分结合力通过溶剂化作用得以加强。前述现象解释了实验观察到的由溶剂化引起的A-B键变化,即在前者系统中它们延长(甚至完全解离),而在后者系统中缩短。 (C)1995年美国物理研究所。 [参考:32]

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