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关于碳纳米管对液晶性能的影响。

On the effect of carbon nanotubes on properties of liquid crystals.

机构信息

Institute of Chemistry-Physical Chemistry, Martin Luther University, Halle-Wittenberg, Halle, Germany.

出版信息

Philos Trans A Math Phys Eng Sci. 2013 Mar 4;371(1988):20120261. doi: 10.1098/rsta.2012.0261. Print 2013 Apr 13.

Abstract

Liquid crystals (LCs), with their fluidity and self-organization, are attractive hosts for the dispersion and manipulation of macro- and nanoparticles, allowing the realization of their ordered assemblies. In addition, new functional materials can be created owing to the particle properties. Among the nanoparticles, carbon nanotubes (CNTs) stand out for their exceptional electrical, thermal and mechanical properties. While LCs can be used for manipulating CNTs, the nanotube properties are attractive also for influencing and tuning LC properties. In this paper, we discuss different aspects of the CNT-LC combination, briefly introducing their dispersion and interaction and then, more extensively, evaluating the CNT effect on selected properties of LCs relevant to display-related applications. We show that some previously reported improvements cannot be considered an intrinsic feature of CNT-doped LCs. In addition, we are also able to follow locally the Frederiks transition of CNT-doped LCs by Raman spectroscopy, revealing the direct effect of bundles of CNTs on LC reorientation.

摘要

液晶(LCs)具有流动性和自组织性,是分散和操纵宏观和纳米粒子的理想主体,允许实现它们的有序组装。此外,由于颗粒性质,可以创造出新的功能材料。在纳米粒子中,碳纳米管(CNTs)因其出色的电学、热学和力学性能而引人注目。虽然 LCs 可用于操纵 CNTs,但纳米管的性质也因其对 LC 性质的影响和调谐而具有吸引力。在本文中,我们讨论了 CNT-LC 组合的不同方面,简要介绍了它们的分散和相互作用,然后更广泛地评估了 CNT 对与显示相关应用相关的 LCs 选定性质的影响。我们表明,一些先前报道的改进不能被认为是掺杂 CNT 的 LCs 的固有特征。此外,我们还能够通过拉曼光谱局部跟踪掺杂 CNT 的 LCs 的 Frederiks 转变,揭示了 CNT 束对 LC 重取向的直接影响。

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