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Polymer-dispersed liquid crystal nanocomposites comprising montmorillonite clay modified by conducting pentamerous oligoaniline

机译:聚合物分散的液晶纳米复合材料,其包含通过进行五聚低聚苯胺改性的蒙脱土

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摘要

Pentamerous oligoaniline (POA) was protonated with sulfuric acid to form emeraldine salts (ES) and then intercalated in montmorillonite (MMT) CL120 to develop a functional conductive organo-layered material. The characteristics of the modified clay CL120/ES-POA were analyzed by wide-angle X-ray diffraction (WAXD) to find the d-spacing of the MMT layer distance, and by Fourier transform infrared (FTIR) spectroscopy for the oligoaniline functional group in CL120/ES-POA, and high-resolution thermogravimetric analysis (TGA) to determine the theoretical intercalation capacity of the modifying agent in the clay. We successfully intercalated the ES-POA into the MMT by ionic exchange reaction. Polymer-dispersed liquid crystal (PDLC) composites were prepared from the modified clay of 1 wt% loaded in the mixtures of 49 wt% photosensitive monomer and 50 wt% nematic liquid crystal (NLC), in a specific case, so as to generate novel functional nanocomposites. The hybridization of CL120/ES-POA clearly improved the electro-optical properties of the PDLCs. In this work, doping CL120/ES-POA at 1 wt% beneficially lowered the driving voltage by almost 70%, increased the transmission contrast ratio by five times and reduced the response time from 4.6 to 0.7 ms at 25 V_(rms) at the expense of the viewing-angle properties.
机译:用硫酸对五聚体低聚苯胺(POA)进行质子化以形成翡翠盐(ES),然后将其嵌入蒙脱石(MMT)CL120中,以开发功能性导电有机层材料。通过广角X射线衍射(WAXD)分析改性粘土CL120 / ES-POA的特性以发现MMT层距离的d-间距,并通过傅里叶变换红外(FTIR)光谱分析低聚苯胺官能团在CL120 / ES-POA中进行分析,并通过高分辨率热重分析(TGA)来确定改性剂在粘土中的理论插层能力。我们通过离子交换反应成功地将ES-POA插入MMT。在特定情况下,由载有49 wt%光敏单体和50 wt%向列液晶(NLC)的混合物中的1 wt%改性粘土制备聚合物分散液晶(PDLC)复合材料,功能纳米复合材料。 CL120 / ES-POA的杂交明显改善了PDLC的电光性能。在这项工作中,以1 wt%掺杂CL120 / ES-POA可以有效地将驱动电压降低近70%,透射对比度提高五倍,并且在25 V_(rms)时的响应时间从4.6降低至0.7 ms。牺牲了视角属性。

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