首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Estimate of Benzene-Triphenylene and Triphenylene-Triphenylene Interactions:A Topic Relevant to Columnar Discotic Liquid Crystals
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Estimate of Benzene-Triphenylene and Triphenylene-Triphenylene Interactions:A Topic Relevant to Columnar Discotic Liquid Crystals

机译:苯-三亚苯基和三亚苯基-三亚苯基相互作用的估计:与柱状盘状液晶有关的主题

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The interaction potential energy of several benzene-triphenylene and triphenylene-triphenylene dimer arrangements has been calculated by a Moller-Plesset second order perturbation theory with a suitably modified 6-31G* basis set.This approach,already tested and successfully employed on the benzene dimer,is presently shown to reproduce,with a level of accuracy comparable to other computationally affordable methods,the interaction potential energy of a few representative configurations of naphthalene dimer,for which high-level ab initio reference data exist.Thus,the method has been confidently applied to the interaction energy computation of the above-mentioned more complex dimers,for which high-level ab initio calculations are yet unfeasible.Comparisons have been made with the results obtained with an empirical force field and,as regards the benzene-triphenylene dimer,also with a dispersion corrected DFT method.The computed set of data may contribute to comprehending how aromatic interactions evolve with the ring size,a subject of general interest and particularly relevant to the field of columnar discotic liquid crystals,where the central cores of the mesogenic molecules often consist of triphenylene or triphenylene-derived units.In this case,attention has been paid to the determination of the favorable relative disposition of the monomers when the aromatic planes are parallel to each other,which is requisite information for their potential use as organic semiconductors.
机译:根据Moller-Plesset二阶扰动理论并采用适当修饰的6-31G *基集计算了几种苯-三苯撑和三苯-三苯撑二聚体的相互作用势能。该方法已经在苯二聚体上进行了测试并成功使用,目前已显示出可以重复的精确度水平,其准确性可与其他计算可负担的方法相媲美,它具有一些代表性的萘二聚体的相互作用势能,因此,该方法具有从头算起的高级参考数据。应用于上面提到的更复杂的二聚体的相互作用能的计算,但尚不能进行高水平的从头算。与经验力场和苯-三苯撑二聚体的结果进行了比较,也可以使用色散校正DFT方法。计算出的数据集可能有助于理解芳香族间环的大小会随着环的发展而变化,这是一个普遍感兴趣的话题,尤其与柱状盘状液晶领域有关,其中介晶分子的中心核通常由三亚苯基或三亚苯基衍生的单元组成。在这种情况下,引起了人们的注意。确定芳族平面彼此平行时单体的有利相对位置,这是它们潜在用作有机半导体的必要信息。

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