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Multiple Alignment Modes for Nematic Liquid Crystals Doped with Alkylthiol-Capped Gold Nanoparticles

机译:烷基硫醇封端的金纳米粒子掺杂的向列液晶的多种排列模式。

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The ability of alkylthiol capped gold nanoparticles (Au NPs) to tune, alter, and reverse the alignment of nematic liquid crystals (LCs) has been investigated in detail. Adjusting the concentration of the suspended Au NPs in the nematic LC host, optimizing the sample preparation protocol, or providing different sample substrates (untreated glass slides, rubbed polyimide-coated LC test cell, or ITO-coated glass slides) results in several LC alignment scenarios (modes) including vertical alignment, planar alignment, and a thermally controlled alignment switch between these two alignment modes. The latter thermal switch between planar and homeotropic alignment was observed particularly for lower concentrations (i.e., around 1 to 2 wt %) of suspended NPs in the size regime of 1.5-2 nm and was found to be concentration-dependent and thermally reversible. Different scenarios are discussed that could explain these induced alignment modes. In one scenario, the NP-induced alignment is related to the temperature-dependent change of the order parameter, S, of the nematic phase (ordering in the bulk). In the second scenario, a change of the ordering of the nematic molecules around the NPs that reside at the interfaces is described. We also started to test spin coating as an alternative way of preparing nematic thin Films with well-separated Au NPs on the substrate and found this to be a possible method for manufacturing of future NP-doped LC devices, as this method produced evenly distributed NPs on glass substrates. Together the presented findings continue to pave the way for LC display-related applications of Au NP-doped nematic LCs and provide insights for N-LC sensor applications.
机译:已详细研究了烷硫醇封端的金纳米颗粒(Au NP)调节,改变和反转向列液晶(LC)排列的能力。调节向列型LC主体中悬浮的Au NP的浓度,优化样品制备方案或提供不同的样品底物(未经处理的载玻片,经摩擦的聚酰亚胺涂层LC测试池或ITO涂层载玻片)会导致多次LC对准场景(模式),包括垂直对齐,平面对齐以及这两种对齐模式之间的热控制对齐切换。观察到后者在平面取向和垂直取向之间的热转换,特别是对于在1.5-2nm的尺寸范围内的较低浓度(即约1至2wt%)的悬浮NP而言,并且发现其是浓度依赖性的并且是热可逆的。讨论了可以解释这些诱导的对准模式的不同场景。在一种情况下,NP诱导的比对与向列相的顺序参数S(整体中的顺序)的温度相关变化有关。在第二种情况下,描述了位于界面处的NP周围的向列分子的顺序变化。我们还开始测试旋涂,这是在基板上制备具有良好分离的Au NP的向列型薄膜的另一种方法,并发现这是制造未来NP掺杂LC器件的一种可能方法,因为该方法可产生均匀分布的NP在玻璃基板上。在一起提出的发现继续为金NP掺杂向列型LC的LC显示器相关应用铺平道路,并为N-LC传感器应用提供见解。

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