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Molecular dynamics simulation of an antiferroelectric liquid crystalline molecule mhpobc: conformational transition in smectic phases

机译:反铁电液晶分子mhpobc的分子动力学模拟:近晶相中的构象转变

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摘要

Molecular dynamics (MD) simulation was carried out for an antiferroelectric liquid crystalline molecule, (S)-4-[(1-methylheptyloxycarbonyl]phenyl 4'-octyloxybiphenyl-4'-carboxylate (MHPOBC), to analyze its conformational property in smectic liquid crystalline phases. The MD simulation reproduces a "solid-SmC_x-SmA-isotropic" phase transition. The MHPOBC molecules in the SmC_x phase are packed in a tilted layered structure, while in the SmA phase the molecular tilt disappears. The chiral alkyl chain in the crystalline phase has a larger gauche population at the C*-C bond, which gives rise to a "highly bent structure". In smectic phases, the conformation of both chiral and achiral alkyl chains is almost fully liberated, and the average molecular shape changes into a "moderately bent structure". Comparison of the results of MD simulation and molecular orbital calculation indicates that the smectic phases of MHPOBC can be distinguished from the solid phase in terms of the alkyl chain conformation, and the SmC_x and SmA phases are distinguished from each other in terms of molecular packing structure.
机译:对反铁电液晶分子(S)-4-[(1-甲基庚氧基羰基)苯基4'-辛氧基联苯-4'-羧酸盐(MHPOBC)进行了分子动力学(MD)模拟,以分析其在近晶液体中的构象性质MD模拟再现了“固态-SmC_x-SmA各向同性”的相变,SmC_x相中的MHPOBC分子堆积成倾斜的层状结构,而在SmA相中,分子倾斜消失了。在近晶相中,手性和非手性烷基链的构象几乎被完全释放,并且平均分子形状在近晶相中具有更大的C * -C键,从而形成“高度弯曲的结构”。 MD模拟结果和分子轨道计算结果的比较表明,MHPOBC的近晶相可以从烷基链构型上与固相区分开。 rmation和SmC_x相和SmA相在分子堆积结构方面彼此不同。

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