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首页> 外文期刊>Journal of chemical theory and computation: JCTC >Theoretical Study on the Structure and the Frequency of Isomers of the Naphthalene Dimer
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Theoretical Study on the Structure and the Frequency of Isomers of the Naphthalene Dimer

机译:萘二聚体异构体的结构和频率的理论研究

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The structures of the naphthalene monomer and dimer were investigated with performing vibrational analysis.The MP2 optimization showed that the naphthalene monomer has a nonplanar geometry in the 6-31G,6-31G~*,6-31+G~*,and 6-311G basis sets,while it has a planar geometry in the 6-31G~*(0.25) and Dunning's correlation consistent basis sets.The MP2/cc-pVDZ calculation showed the presence of the four stable isomers,which were part of the isomers in the previous MP2/6-31G~* calculation (Walsh,T.R.Chem.Phys.Lett.2002,363,45).The presence of extra structures in the MP2/6-31G~* calculation is attributed to a poor description of the potential energy surface,which is evident from the nonplanar structure of the monomer in the MP2/6-31G~* calculation.The relative stability among the isomers in the MP2/cc-pVDZ calculation without counterpoise correction was maintained in both the single-point calculation at the MP2/aug-cc-pVDZ//MP2/cc-pVDZ level and the counterpoise-corrected optimization at the MP2/cc-pVDZ level.The relative stability among the isomers suggested an enhancement of the pi-PI interaction in the structure with lower symmetry,which could be explained using a molecular-orbital model.The vibrational analysis in MP2/cc-pVDZ without the counterpoise correction suggested that the isomers of the naphthalene dimer were distinguishable by the observation of the infrared spectrum in the low-frequency region (150-600 cm~(-1)).
机译:通过振动分析研究了萘单体和二聚体的结构。MP2优化表明,萘单体在6-31G,6-31G〜*,6-31 + G〜*和6- 311G基集,而它在6-31G〜*(0.25)中具有平面几何形状,并且具有Dunning的相关一致基集。MP2/ cc-pVDZ计算显示存在四个稳定的异构体,它们是以前的MP2 / 6-31G〜*计算(Walsh,TRChem.Phys.Lett.2002,363,45).MP2 / 6-31G〜*计算中存在多余的结构归因于对MP2 / 6-31G〜*的描述不充分。从MP2 / 6-31G〜*计算中单体的非平面结构可以明显看出它的势能面。在没有点平衡校正的情况下,在MP2 / cc-pVDZ计算中,异构体之间的相对稳定性都保持了单点在MP2 / aug-cc-pVDZ // MP2 / cc-pVDZ级别进行计算,并在M处进行平衡校正优化P2 / cc-pVDZ水平。异构体之间的相对稳定性表明,结构中的pi-PI相互作用增强,对称性较低,这可以用分子轨道模型来解释。平衡校正表明,通过观察低频区域(150-600 cm〜(-1))中的红外光谱,可以区分萘二聚体的异构体。

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