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Electric field assisted-unidirectional hybrid films of carbon nanotubes and liquid crystal polymer for light modulation

机译:用于光调制的碳纳米管和液晶聚合物的电场辅助 - 单向混合膜

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摘要

To develop stable polymer films which had high orientational ordering of carbon nanotube for polarization-dependent light modulator, we present a new concept for electric-field induced alignment of mesogenic carbon nanotubes (m-CNTs) in reactive mesogen host (RMS) fixed by ultraviolet (UV) polymerization. Covalent modification of m-CNTs was performed using structure-tailored mesogenic units [ 4-(6-hydroxyhexanolxy)-4'-carbonitrile, PCNOH] in esterification reaction based on 100-500 nm long CNTs shortened by acid oxidation cutting, confirmed through 1H NMR, FT-IR, Raman and XPS spectroscopy. Dynamic orientation of m-CNTs in soft m-CNT/ RMS composite without aggregates was observed on a large scale by polarized optical microscopy, in which m-CNTs aligns along the electric field direction. It was reasonable the mesogenic segments introduced onto m-CNTs weakened van der walls interactions between the nanotubes by increasing steric repulsion, and then effectively improved the favourable affinity of m-CNTs with RMS molecules. Direct UV-induced polymerization of RMS molecules stabilized the orientational ordering of m-CNTs confirmed by Raman spectroscopy, and the obtained film also exhibited anisotropic light absorption depending on the polarization direction of an incident light. The facile methodology described in this study to generate oriented films of m-CNTs-in-RMS broadened the scope of potential applications of modulator devices and versatile functional composites with anisotropic physical properties.
机译:为了开发具有高型光调制器的碳纳米管具有高定向排序的稳定聚合物薄膜,我们在通过紫外线固定的反应性介质宿主(RMS)中的电场源性碳纳米管(M-CNT)的电场诱导对准的新概念(UV)聚合。使用结构定制的介晶单位[4-(6-羟基己烷醇)-4'-碳腈,PCNOH]基于酸氧化切割缩短的100-500nm长的CNT来进行M-CNT的共价修饰,通过酸性氧化切割,通过1H确认NMR,FT-IR,拉曼和XPS光谱。通过极化光学显微镜在大规模上观察到没有聚集体的软M-CNT / RMS复合材料中M-CNT的动态取向,其中M-CNT沿电场方向对准。它是合理的,在M-CNTS上引入的介子源区段通过增加空间排斥,然后通过增加空间排斥,从而通过增加纳米管之间的相互作用,然后有效地改善了M-CNT与RMS分子的有利亲和力。直接紫外诱导的RMS分子聚合稳定通过拉曼光谱证实的M-CNT的定向排序,并且所得薄膜也根据入射光的偏振方向表现出各向异性光吸收。本研究中描述的内容方法,以产生M-CNTS-In-RMS的导向薄膜,扩大了调节装置和具有各向异性物理性质的多种功能性复合材料的潜在应用的范围。

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