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首页> 外文期刊>Journal of Computational Chemistry: Organic, Inorganic, Physical, Biological >Force-Field Modeling through Quantum Mechanical Calculations: Molecular Dynamics Simulations of a Nematogenic Molecule in its Condensed Phases
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Force-Field Modeling through Quantum Mechanical Calculations: Molecular Dynamics Simulations of a Nematogenic Molecule in its Condensed Phases

机译:通过量子力学计算的力场建模:致密化相的线虫分子的分子动力学模拟。

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摘要

Interaction energy of the 4-n-pentyloxy-4'-cyanobiphenyl (5OCB) dimer is Computed at MP2 level, for many geometrical arrangements using the Fragmentation Reconstruction Method (FRM). DFT calculations are performed for a number of geometries of the monomer. The resulting database is used to parameterize an atomistic intra- and inter-molecular force-field suitable for classical bulk simulations. Several structural and dynamical properties in 5OCB isotropic and liquid crystalline phases are computed from molecular dynamics simulation mainly in the NPT ensemble. Lengthy runs (more than 70 us) and large sample sizes (up to 806 molecules) were used to determine the nematic to isotropic transition temperature up to a precision of few K. Good agreement was found in most of the investigated properties, thus validating the accuracy of the proposed model potential. only derived by quantum mechanical calculations.
机译:对于许多几何排列,使用“碎片重建法”(FRM),可以在MP2级别上计算4-n-戊氧基-4'-氰基联苯(5OCB)二聚体的相互作用能。对多种几何形状的单体进行DFT计算。生成的数据库用于参数化适用于经典本体模拟的原子内分子间和分子间力场。 5OCB各向同性和液晶相的一些结构和动力学性质主要是通过在NPT集合中进行的分子动力学模拟来计算的。长时间运行(超过70 us)和大样本量(最多806个分子)被用来确定向列向各向同性的转变温度,精度达到几K。在大多数研究的性质中发现了很好的一致性,从而验证了拟议模型潜力的准确性。仅由量子力学计算得出。

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