首页> 外文期刊>The European physical journal, E. Soft matter >Conducting polymers as driving electrodes for Polymer-Dispersed Liquid-Crystals display devices: On the electro-optical efficiency
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Conducting polymers as driving electrodes for Polymer-Dispersed Liquid-Crystals display devices: On the electro-optical efficiency

机译:导电聚合物作为聚合物分散液晶显示设备的驱动电极:关于电光效率

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Intrinsically conducting polymer (ICP) thin films are used as driving electrodes for Polymer-Dispersed Liquid-Crystals (PDLC) display devices. In order to investigate the electro-optical efficiency of these organic electrodes, three different kinds of conducting polymers, i.e. polyaniline doped with 10-camphorsulfonic acid (PANI(HCSA)), polypyrrole doped with dodecylbenzenesulfonic acid (PPY(DBSA)), and polyethylenedioxythiophene doped with polystyrenesulfonate (PEDOT(PSS)), were prepared or purchased, and coated either on glass or plastic substrates. Optical absorption studies in the UV-Vis range of the conducting polymer-coated substrates were first performed showing the presence of conducting species for the three types of polymers. The electrical characteristics of the resulting films were measured with the four-probes technique. PANI(HCSA) exhibits a higher conductivity σ~122S·cm~(-1)(Rs = 1.2 10~3Ω·□~(-1)) compared to PPY(DBSA) σ~2.6S·cm~(-1)(Rs = 150.7 10~3Ω·□~(-1)), and PEDOT(PSS) σ~1.6S·cm~(-1)(Rs = 637.3 10~3Ω·□~(-1)). It is also shown that for a given conducting polymer, its electrical conductivity decreases when a plastic substrate is used. These observations have been related to significant morphological changes observed by scanning electron microscopy (SEM). A mixture of Norland Optical Adhesive 65 and nematic liquid-crystal E7 in the weight ratio (35 : 65) was used as precursor of the PDLC material. Better electro-optical responses (transmission properties, drive voltages and switching times) of PDLC films were obtained for devices prepared with (PPY(DBSA))-based electrodes. The electro-optical performances of the PDLC display devices also depend on the nature of the ICP substrate used.
机译:本征导电聚合物(ICP)薄膜用作聚合物分散液晶(PDLC)显示设备的驱动电极。为了研究这些有机电极的电光效率,使用三种不同类型的导电聚合物,即掺杂有10-樟脑磺酸的聚苯胺(PANI(HCSA)),掺杂有十二烷基苯磺酸的聚吡咯(PPY(DBSA))和聚乙烯二氧噻吩制备或购买掺杂有聚苯乙烯磺酸盐(PEDOT(PSS))的涂料,并将其涂覆在玻璃或塑料基材上。首先进行了导电聚合物涂层基材在UV-Vis范围内的光吸收研究,表明存在三种类型的聚合物的导电物质。用四探针技术测量所得膜的电特性。 PANI(HCSA)的电导率σ〜122S·cm〜(-1)(Rs = 1.2 10〜3Ω·□〜(-1))比PPY(DBSA)的电导率σ〜2.6S·cm〜(-1) (Rs = 150.7 10〜3Ω·□〜(-1)),PEDOT(PSS)σ〜1.6S·cm〜(-1)(Rs = 637.3 10〜3Ω·□〜(-1))。还显示出对于给定的导电聚合物,当使用塑料基底时其导电率降低。这些观察结果与通过扫描电子显微镜(SEM)观察到的明显的形态变化有关。重量比(35∶65)的Norland光学粘合剂65和向列型液晶E7的混合物用作PDLC材料的前体。对于使用(PPY(DBSA))基电极制备的器件,PDLC膜具有更好的电光响应(透射特性,驱动电压和开关时间)。 PDLC显示设备的电光性能还取决于所用ICP基板的性质。

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