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Modeling and spectral simulation of matrix-isolated molecules by density functional calculations: A case study on formic acid dimer

机译:通过密度泛函计算对基质分离的分子进行建模和光谱模拟:以甲酸二聚体为例

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摘要

The supermolecule approach has been used to model molecules embedded in solid argon matrix, wherein interaction between the guest and the host atoms in the first solvation shell is evaluated with the use of density functional calculations. Structural stability and simulated spectra have been obtained for formic acid dimer (FAD)-Arn (n 21-26) clusters. The calculations at the B9716-31G(3df,3pd) level have shown that the tetrasubstitutional site on Ar(111) plane is likely to incorporate FAD most stably, in view of consistency with the matrix shifts available experimentally.
机译:超分子方法已被用于对嵌入固体氩气基质中的分子进行建模,其中使用密度泛函计算来评估第一溶剂化壳中客体与主体原子之间的相互作用。已获得甲酸二聚体(FAD)-Arn(n 21-26)团簇的结构稳定性和模拟光谱。 B9716-31G(3df,3pd)水平的计算表明,考虑到与实验中可用的矩阵偏移的一致性,Ar(111)平面上的四取代位可能最稳定地结合了FAD。

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