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Reliable optoelectronic switchable device implementation by CdS nanowires conjugated bent-core liquid crystal matrix

机译:可靠的光电可切换器件由CD纳米线共轭弯曲芯液晶矩阵

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摘要

Enhancing the performance of high luminescent and dielectrically capable cadmium sulfide nanowire (CdS NW) is of great importance, because of their promising ability in analyzing the dimensionality and size. The tuned physical characteristics of semiconductor CdS NWs allowed the manipulation of both electronic and optoelectronic devices at the nanoscale by dispersing a new bent core (BC) liquid crystal (LC) compound. This was derived from a 4-chlororesorcinol central core unit with two terephthalate based rod-like units carrying chiral (S)-3, 7-dimethyloctyloxy (namely 'CPDB') terminal chains, which have been synthesized in a pure solvo-chemical process. The mesomorphic properties of the newly-prepared bent-core LC, exhibiting an enantio-tropy 'Sm A' phase as a result of dispersing 0.005% of CdS NWs, were investigated by several spectroscopic investigations. In addition, the hydrothermal fabrication of CdS NWs with a high-yield was modified with a cationic agent, cetyltrimethyl ammonium bromide (CTAB), which was utilized as a compatibilizer for providing a better interaction with LC molecules and giving a homogeneous solution. This work focused on the experimental investigation and optimization, using a combinational view of bent-core liquid crystal (CPDB) compound dispersion which was achieved in a controllable manner. The product of the resulting composite matrix has a very outstanding and promising behavior, e.g. semiconductor nanostructures emission polarization that can be manipulated using an external bias modulation of the novel switchable device, which was found quite convincing in the recent trends of brand-new technologies. In particular, the electro-optic responses by POM of various mesophases were investigated from the view point of the CdS incorporated bent-core LC matrix formation and transitional phase variants of 'ON' and 'OFF' states, which were depending on the geometrical parameters of CdS NW's. Finally, the future challenges and prospects of any other nanomaterials dispersed into CPDB compound which will give rise to an increase of the mesomorphic range by preserving the mesophase type were explored in detail.
机译:增强高发发光和介电能力的硫化镉纳米线(CDS NW)的性能非常重要,因为它们具有分析维度和大小的有希望的能力。半导体CDS NW的调谐物理特性允许通过分散新的弯曲芯(BC)液晶(LC)化合物来操纵纳米级的电子和光电器件。这源自4-氯霉素中央核心单元,其具有两种基于对苯二甲酸盐的杆状单位,其携带手性(S)-3,7-二甲基辛氧基(即'CPDB')末端链,其在纯的Solvo-化学过程中合成。通过几种光谱研究研究了作为分散0.005%CDS NWS的enalio-Tropy-Tropy的SM A“相的弯曲核心LC的中间形特性。此外,用阳离子剂,甲基三甲基溴化铵(CTAB)改性Cds NWS的水热制造,其用作增容剂,用于提供更好的与LC分子相互作用并提供均匀的溶液。这项工作的重点是实验研究和优化,使用弯曲芯液晶(CPDB)化合物分散体以可控方式实现的组合视图。所得复合基质的产物具有非常出色和有前途的行为,例如,半导体纳米结构可以使用新型可切换装置的外部偏压调制来操纵,这在最近的全新技术趋势中发现了非常令人信服。特别地,从CD的弯曲核心LC基质形成和“ON”和'OFF'状态的过渡相变的视点,研究了各种中间蛋白酶的POM的电光响应,这是根据几何参数的CDS NW的。最后,详细探讨了分散到CPDB化合物中的任何其他纳米材料的未来挑战和前景,这将导致通过保留中间相型来增加中间形晶系的增加。

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  • 来源
    《Organic Electronics》 |2020年第7期|105592.1-105592.14|共14页
  • 作者单位

    Bharath Institute of Higher Education and Research BIHER Research park 173 Agharam Road Selaiyur Chennai 600073 Tamil Nadu India;

    Bharath Institute of Higher Education and Research BIHER Research park 173 Agharam Road Selaiyur Chennai 600073 Tamil Nadu India International and Inter University Centre for Nanoscience and Nanotechnology School of Energy Materials Mahatma Gandhi University Kottayam Kerala 686560 India;

    Drug Microbiology Lab Drug Radiation Research Department National Center for Radiation Research and Technology (NCRRT) Atomic Energy Authority Cairo Egypt Chemical Engineering Department Military Technical College Egyptian Armed Forces Cairo Egypt;

    Center for Nanotechnology (CNT) School of Engineering and Applied Sciences Nile University Sheikh Zayed 16453 Giza Egypt Department of Electrical and Electronic Information Engineering Toyohashi University of Technology Toyohashi Aichi 441-8580 Japan;

    University of Turin Department of Physics Giuseppe Verdi 8 10124 Torino TO Italy;

    Solid State Department 'Jozef Stefan' Institute Jamova 39 1000 Ljubljana University of Maribor Koroska 160 2000 Maribor Slovenia;

    International and Inter University Centre for Nanoscience and Nanotechnology School of Energy Materials Mahatma Gandhi University Kottayam Kerala 686560 India;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Bent-core liquid crystal (CPDB) compounds; CdS nanowires; Dielectric properties; Electro-optical; Switchable devices;

    机译:弯曲芯液晶(CPDB)化合物;CD纳米线;电介质特性;电光;可切换设备;

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