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Conjugation of Nanomaterials and Nematic Liquid Crystals for Futuristic Applications and Biosensors

机译:用于未来应用和生物传感器的纳米材料和向列液晶的共轭

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摘要

The established role of nematic liquid crystals (NLCs) in the recent rapid development of displays has motivated researchers to modulate the electro-optical properties of LCs. Furthermore, adding nanomaterials into NLCs has led to enhancements of the properties of NLCs, like reduced threshold of the operating voltage, variation in pretilt angle, reduced switching time, etc. These enhanced properties, due to interfacial dynamics, are enabling wider applications of NLCs and nanomaterials. The recent literature of nanomaterial-doped NLCs is rich with various kinds of nanomaterials in a variety of NLCs. The light has been focused on the most widely used and studied gold nanoparticles in NLCs. The intrinsic inherent property of easy excitation of surface plasmons polaritons (SPP) is the mediating interaction of NLC electric dipoles and the polarization of charges in the GNP surface. The concepts and methods for the application of metal nanomaterials as dopants in NLCs are discussed for future applications, especially biosensors. The biosensing application of NLCs alone has already been proven in the literature. However, it is always desirable to further enhance the detection efficiency and selectivity, which have been achieved by the conjugation of GNPs and nickel nanoparticles with NLCs and their compatibility with biological materials. This aspect of future application of nanoparticles and NLC makes the point more selective to be included in the present manuscript.
机译:向列型液晶(NLC)在显示器的快速发展中已确立的作用促使研究人员调节LC的电光特性。此外,将纳米材料添加到NLC中可增强NLC的性能,例如降低工作电压阈值,预倾斜角变化,减少切换时间等。由于界面动力学,这些增强的性能使NLC的应用更加广泛和纳米材料。掺杂纳米材料的NLC的最新文献中包含各种NLC中的各种纳米材料。该光聚焦于NLC中使用最广泛和研究最多的金纳米粒子。表面等离子体激元极化子(SPP)容易激发的内在固有属性是NLC电偶极子与GNP表面电荷极化之间的介导相互作用。讨论了将金属纳米材料用作NLC中的掺杂剂的概念和方法,以用于未来的应用,尤其是生物传感器。仅NLC的生物传感应用已在文献中得到证明。但是,总是希望进一步提高检测效率和选择性,这是通过将GNP和镍纳米颗粒与NLC结合以及它们与生物材料的相容性来实现的。纳米颗粒和NLC的未来应用的这一方面使得该点更具选择性,可以包含在本手稿中。

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