首页> 外文期刊>Journal of chemical theory and computation: JCTC >Multi-State VALBOND for Atomistic Simulations of Hypervalent Molecules, Metal Complexes, and Reactions
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Multi-State VALBOND for Atomistic Simulations of Hypervalent Molecules, Metal Complexes, and Reactions

机译:用于恶化分子,金属配合物和反应的原子模拟的多状态valbond

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摘要

The implementation, validation, and application of the multi-state VALBOND method for transition-metal-containing and hypervalent molecules are presented. This approach is particularly suited for molecules with unusual shapes and systems that need to be described by a superposition of resonance structures, each of which satisfies the octet rule. The implementation is based on the original VALBOND force field and allows us to smoothly switch between resonance structures, each of which can be characterized by its own force field, including varying charge distributions and coupling terms between the states. The implementation conserves total energy for simulations in the gas phase and in solution and is applied to a number of topical systems. For the small hypervalent molecule ClF3, the barrier for pseudorotation is found to be 4.3 kcal/mol, which compares favorably with the experimentally measured value of 4.8 kcal/mol. A transition-metal-containing complex, cisplatin, is characterized by six resonance states, for which the vibrational spectrum is found to be in good agreement with experiment. Finally, umbrella sampling simulations of the S(N)2 reaction BrMe + Cl-- Br- + MeCl in solution yield a barrier height of 24.6 kcal/mol, in good agreement with experiment (24.7 kcal/mol).
机译:提出了用于过渡金属和高效分子的多态Valbond方法的实施,验证和应用。这种方法特别适用于具有不寻常的形状和系统的分子,其需要通过谐振结构的叠加来描述,每个谐振结构满足八位字节规则。该实现基于原始valbond力字段,并且允许我们在谐振结构之间平稳地切换,每个谐振结构可以由其自身的力字段表征,包括州之间的变化电荷分布和耦合术语。实施过程节省了气相和溶液中模拟的总能量,并应用于许多局部系统。对于小型高血管分子ClF3,发现假致畸形的屏障为4.3kcal / mol,这与实验测量值为4.8kcal / mol的有利额。含过渡金属的复合物顺铂,其特征在于六个共振状态,其中发现振动谱与实验吻合良好。最后,S(n)2反应Brme + Cl - &gt的伞采样模拟。 BR- + MECL在溶液中产生24.6千卡/摩尔的屏障高度,与实验良好(24.7 kcal / mol)。

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