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首页> 外文期刊>Liquid Crystals: An International Journal in the Field of Anisotropic Fluids >Orientational control of liquid crystal molecules via carbon nanotubes and dichroic dye in polymer dispersed liquid crystal
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Orientational control of liquid crystal molecules via carbon nanotubes and dichroic dye in polymer dispersed liquid crystal

机译:聚合物分散液晶碳纳米管和二色性染料液晶分子的取向控制

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摘要

Polymer dispersed liquid crystals (PDLCs) using nematic liquid crystal and photo-curable polymer (NOA 65) were prepared by polymerisation-induced phase separation technique, in equal ratio (1:1) of polymer and liquid crystal (LC). We demonstrate that doping of small amount (0.125%, wt./wt.) of multiwall carbon nanotubes (CNTs) and orange azo dichroic dye in PDLC generously controlled the molecular orientation, dynamics of LC in droplet and size of droplets. The effects of multiwall CNTs and dye on PDLCs were studied in terms of transition temperature, droplet morphology, transmittance characteristic, contrast ratio and response time. The results exhibited that the values of the threshold electric fields were reduced from 8 V/mu m (pure PDLC) to 1.18 and 1.72 V/mu m, doped with multiwall CNTs and dye, respectively. The CNTs-doped PDLC shows faster switching response as compared with pure PDLC and dye-doped PDLC. However, dye-doped PDLC shows much higher contrast among all PDLC samples. Further, the results also illustrate that the birefringence value of LC in PDLCs was changed with doping of CNTs and dye.
机译:通过聚合诱导的相分离技术,聚合物和液晶(LC)的相等比例(1:1),通过聚合诱导的相分离技术制备使用向液晶和光固化聚合物(NOA 65)的聚合物分散液晶(PDLC)。我们证明PDLC中的多壁碳纳米管(CNT)和橙色偶氮二向色染料的少量(0.125%,WT./WT)的掺杂慷慨地控制了液滴中LC的分子取向和液滴尺寸的分子取向。在转变温度,液滴形态,透射率特征,对比度和响应时间方面研究了多壁CNT和染料对PDLC的影响。结果表明,阈值电场的值从8V / mu m(纯PDLC)降低至1.18和1.72V / mu m,分别掺杂有多壁CNT和染料。与纯PDLC和染料掺杂PDLC相比,CNTS掺杂的PDLC显示出更快的开关响应。然而,染料掺杂的PDLC在所有PDLC样品中显示出更高的对比度。此外,结果还表明,用CNT和染料的掺杂改变了PDLC中LC的双折射值。

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