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首页> 外文期刊>Polymers for advanced technologies >The electrical properties of nickel (II) phthalocyanine and phenyl-C-61-butyric-acid-methyl ester doped nematic liquid crystals under laser light
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The electrical properties of nickel (II) phthalocyanine and phenyl-C-61-butyric-acid-methyl ester doped nematic liquid crystals under laser light

机译:镍(II)酞菁和苯基-C-61-丁酸-甲基酯掺杂的向列液晶的激光电学性质

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Because of increasing attention of technological device applications of liquid crystals (LCs), determination of their electrical properties becomes important. In this work, experimental optimization for concentration and laser power effects on nematic LC's voltage-controlled negative resistance behavior has been studied co-usage of nickel (II) phthalocyanine (NiPc) and phenyl-C-61-butyric-acid-methyl ester (PCBM) polymer in nematic liquid crystal (E63). NiPc concentration has been arranged to be between percentages changing from 1 to 5 wt%, whereas a 1 wt% of PCBM has been used in E63 LC. The LC cells have been exposed to 632-nm laser illumination with power of 0-100 mW, and the influence of laser illumination on current-voltage (I-V) characteristics has also been examined. According to I-V measurements of the LC composites under laser illumination, an increase in current has been observed because of dispersal agents of NiPc and PCBM. The possible reason behind this result can be the increase of the impurity ion in E63 under laser illumination. Ionic charge carriers can move freely in the volume of the LC structure and hence conductivity increases. The value of the current increases for NiPc doped E63 in the dark, and it increases further to a higher value under photo-irradiation because of the ionic charges caused by photo-excited electrons from NiPc to LC medium. The higher increase in conductivity has been observed to more efficient free-charge carrier collection provided by 5 wt% NiPc and 1 wt% PCBM doped in LC hybrid medium under laser irradiation. Copyright (C) 2015 John Wiley & Sons, Ltd.
机译:由于液晶(LC)的技术设备应用越来越受到关注,因此确定其电性能变得很重要。在这项工作中,研究了镍(II)酞菁(NiPc)和苯基-C-61-丁酸-甲基酯(向列液晶(E63)中的聚合物。 NiPc浓度已安排在从1到5 wt%的百分比之间变化,而在E63 LC中已使用1 wt%的PCBM。 LC单元已暴露于功率为0-100 mW的632 nm激光照射下,并且还检查了激光照射对电流-电压(I-V)特性的影响。根据在激光照射下LC复合材料的I-V测量,由于NiPc和PCBM的分散剂,观察到电流增加。该结果背后的可能原因可能是激光照射下E63中杂质离子的增加。离子载流子可以在LC结构的体积中自由移动,因此电导率增加。在黑暗中,NiPc掺杂的E63的电流值增加,在光辐照下电流值进一步增加,这是由于从NiPc到LC介质的光激发电子引起的离子电荷。观察到电导率的更高增加,是由于在激光辐照下在LC混合介质中掺杂了5 wt%的NiPc和1 wt%的PCBM可以更有效地收集自由电荷载流子。版权所有(C)2015 John Wiley&Sons,Ltd.

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