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Slow Molecular Reorientation in Higher-Ordered Liquid Crystalline Phases of a Homologous Series of Stilbenes

机译:慢的分子重新定向在较高有序液晶阶段的同源系列的斯蒂芬

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Reorientations of molecules in orthogonal smectic phases (SmA, SmB, and SmE) of a homologous series of stilbenes have been studied by broad band dielectric spectroscopy and their activation energies have been determined. The effect of the molecular length on the reorientation around a short and the long molecular axis is described in detail. The reorientation around the long molecular axis is locked out in the SmE phase of homologues with a short alkoxy chain length whereas the reorientation around the short molecular axis is always active. A change of the activation energy describing the reorientation around a short molecular axis is accompanied by a change of the relaxation frequency of the reorientation around the long molecular axis in the SmE phase. This coincidence compels evidence for a relationship between both reorientations in the higher-ordered biaxial smectic E phase.
机译:已经通过宽带介电光谱研究了同源系列斜丝的正交次晶相(SMA,SMB和SME)中的分子的重新定位,并确定了它们的活化能量。详细描述了分子长度对围绕短分子轴的重新定位的影响。长分子轴周围的重新定位在具有短的烷氧基链长度的同源物的中小企业阶段中锁定,而短分子轴线周围的重新定位始终是活性的。描述在短分子轴周围的激活能量的改变伴随着中小企业期间的长分子轴线周围的重新定位的弛豫频率的变化。这种巧合强迫证据在较高订购的双轴偏见E期之间的两个重构之间的关系。

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