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理解恶二唑弯曲核向列型液晶中的独特弹性常数。

Understanding the distinctive elastic constants in an oxadiazole bent-core nematic liquid crystal.

作者信息

Kaur S, Addis J, Greco C, Ferrarini A, Görtz V, Goodby J W, Gleeson H F

机构信息

School of Physics and Astronomy, University of Manchester, Manchester M13 9PL, United Kingdom.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2012 Oct;86(4 Pt 1):041703. doi: 10.1103/PhysRevE.86.041703. Epub 2012 Oct 5.

Abstract

The splay and bend elastic constants of the bent-core oxadiazole material [C5-Ph-ODBP-Ph-OC12] have been investigated as a function of temperature across the nematic phase. The bend constant K(33) is found to take values of ~3.0 pN and to be almost temperature independent, whereas, the splay constant K(11) increases monotonically from ~3.5 pN close to the isotropic phase transition to values of ~9 pN deep in the nematic phase. No pretransitional divergence is observed in either K(11) or K(33) at temperatures approaching the underlying phase. This behavior of the elastic constants is distinct from that observed in rodlike liquid crystal systems but appears to share characteristics with the few other bent-core nematic systems studied to date. We discuss the interdependence of the elastic constants, the birefringence, and the order parameter to allow a comparison of the observed behavior with theory. We show that calculations of the elastic constants via molecular-field theory and atomistic modeling are in excellent qualitative as well as good quantitative (within 2 pN) agreement with the measurements across the temperature range, offering a deeper understanding of the elasticity in bent-core nematic materials than has been, hitherto, available.

摘要

已研究了弯曲核二恶唑材料[C5-Ph-ODBP-Ph-OC12]的展曲和弯曲弹性常数随温度在向列相范围内的变化情况。发现弯曲常数K(33)的值约为3.0 pN,且几乎与温度无关,而展曲常数K(11)则从接近各向同性相转变时的约3.5 pN单调增加到向列相深处的约9 pN。在接近基础相的温度下,未观察到K(11)或K(33)的预转变发散。弹性常数的这种行为与在棒状液晶系统中观察到的不同,但似乎与迄今为止研究的其他少数弯曲核向列相系统具有共同特征。我们讨论了弹性常数、双折射和序参量之间的相互依存关系,以便将观察到的行为与理论进行比较。我们表明,通过分子场理论和原子模型对弹性常数进行的计算在定性上非常出色,在定量上(在2 pN范围内)也与整个温度范围内的测量结果吻合良好,这比以往更深入地理解了弯曲核向列相材料中的弹性。

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