首页> 外文期刊>Journal of chemical theory and computation: JCTC >An Effective Hamiltonian Molecular Orbital-Valence Bond (MOVB)Approach for Chemical Reactions as Applied to the Nucleophilic Substitution Reaction of Hydrosulfide Ion and Chloromethane
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An Effective Hamiltonian Molecular Orbital-Valence Bond (MOVB)Approach for Chemical Reactions as Applied to the Nucleophilic Substitution Reaction of Hydrosulfide Ion and Chloromethane

机译:一种有效的化学反应哈密顿分子价键(MOVB)方法,用于氢硫化物离子和氯甲烷的亲核取代反应

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An effective Hamiltonian mixed molecular orbital and valence bond(EH-MOVB)method is described to obtain accurate potential energy surfaces for chemical reactions.Building upon previous results on the construction of diabatic and adiabatic potential surfaces using ab initio MOVB theory,we introduce a diabatic-coupling scaling factor to uniformly scale the ab initio off-diagonal matrix element H_(12)such that the computed energy of activation from the EH-MOVB method is in agreement with the target value.The scaling factor is very close to unity,resulting in minimal alteration of the potential energy surface of the original MOVB model.Furthermore,the relative energy between the reactant and product diabatic states in the EH-MOVB method can be improved to match the experimental energy of reaction.A key ingredient in the EH-MOVB theory is that the off-diagonal matrix elements are functions of all degrees of freedom of the system and the overlap matrix is explicitly evaluated.The EH-MOVB method has been applied to the nucleophilic substitution reaction between hydrosulfide and chloromethane to illustrate the methodology,and the results were matched to reproduce the results from ab initio valence bond self-consistent-field(VBSCF)calculations.The diabatic coupling(the off-diagonal matrix element in the generalized secular equation)has small variations along the minimum energy reaction path in the EH-MOVB model,whereas it shows a maximum value at the transition state and has nearly zero values in the regions of the ion-dipole complexes from VBSCF calculations.The difference in the diabatic coupling stabilization is attributed to the large overlap integral in the computationally efficient MOVB method.
机译:描述了一种有效的哈密顿混合分子轨道和价键(EH-MOVB)方法,以获取用于化学反应的准确势能面。在先前基于从头算MOVB理论构造的绝热和绝热势面的基础上,我们引入了绝热-耦合缩放因子以均匀缩放从头开始的非对角矩阵元素H_(12),从而使从EH-MOVB方法计算出的激活能量与目标值一致。缩放因子非常接近于单位,结果此外,可以提高EH-MOVB方法中反应物与产物非绝热态之间的相对能,以匹配反应的实验能。EH- MOVB理论是非对角矩阵元素是系统所有自由度的函数,并且对重叠矩阵进行了明确评估。 Hod已应用于氢硫化物与氯甲烷之间的亲核取代反应以说明该方法,并且将结果进行匹配以重现从头算价键自洽场(VBSCF)计算得出的结果。非对角线耦合(非对角线)在EH-MOVB模型中,沿着最小化能量反应路径的广义元素(在一般的长期方程中)具有很小的变化,而它在过渡态时显示出最大值,而在VBSCF的离子-偶极子络合物的区域中几乎为零非绝热耦合稳定性的差异归因于计算效率高的MOVB方法中的大重叠积分。

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