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具有光固化可逆和记忆电光模式的胆甾相液晶-碳纳米管复合材料。

Cholesteric liquid crystal-carbon nanotube composites with photo-settable reversible and memory electro-optic modes.

作者信息

Yaroshchuk Oleg, Tomylko Sergiy, Gvozdovskyy Igor, Yamaguchi Rumiko

机构信息

Institute of Physics, NAS of Ukraine, Kyiv, Ukraine.

出版信息

Appl Opt. 2013 Aug 1;52(22):E53-9. doi: 10.1364/AO.52.000E53.

Abstract

The photoresponsive electro-optical composites based on cholesteric liquid crystal (CLC) with optically controlled chirality and a minute amount of carbon nanotubes (CNTs) are studied. In cells with homeotropic anchoring, these composites exhibit a transition from fingerprint texture to homeotropic nematic texture in the course of photoinduced unwinding of the cholesteric helix. Compared with the CLC counterpart, this transition is much delayed, because of the stabilization of cholesteric filamentary domains by CNTs. The CLC-CNT composites demonstrate dual-mode operation with optical switching between reversible and memory mode. It is found that the memory response is associated with the elastic network of filamentary cholesteric domains that stabilizes the planar CLC texture reached in an electric field. In turn, the reversible mode corresponds to the unwound cholesteric state. Potential applications of this effect are discussed.

摘要

研究了基于胆甾相液晶(CLC)的光响应电光复合材料,该材料具有光学控制的手性和微量的碳纳米管(CNT)。在具有垂直取向锚定的盒中,这些复合材料在胆甾相螺旋光致展开过程中表现出从指纹织构到垂直向列织构的转变。与CLC对应物相比,这种转变被大大延迟,这是由于碳纳米管对胆甾相丝状畴的稳定作用。CLC-CNT复合材料展示了在可逆模式和记忆模式之间进行光学切换的双模式操作。发现记忆响应与丝状胆甾相畴的弹性网络有关,该网络稳定了在电场中达到的平面CLC织构。反过来,可逆模式对应于展开的胆甾相状态。讨论了这种效应的潜在应用。

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