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Magnetic Nanoparticle-Assisted Tunable Optical Patterns from Spherical Cholesteric Liquid Crystal Bragg Reflectors

机译:球形胆甾型液晶布拉格反射器的磁性纳米粒子辅助可调谐光学图案

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摘要

Cholesteric liquid crystals (CLCs) exhibit selective Bragg reflections of circularly polarized (CP) light owing to their spontaneous self-assembly abilities into periodic helical structures. Photonic cross-communication patterns could be generated toward potential security applications by spherical cholesteric liquid crystal (CLC) structures. To endow these optical patterns with tunability, we fabricated spherical CLC Bragg reflectors in the shape of microshells by glass-capillary microfluidics. Water-soluble magnetofluid with Fe3O4 nanoparticles incorporated in the inner aqueous core of CLC shells is responsible for the non-invasive transportable capability. With the aid of an external magnetic field, the reflection interactions between neighboring microshells and microdroplets were identified by varying the mutual distance in a group of magnetically transportable and unmovable spherical CLC structures. The temperature-dependent optical reflection patterns were investigated in close-packed hexagonal arrangements of seven CLC microdroplets and microshells with inverse helicity handedness. Moreover, we demonstrated that the magnetic field-assisted assembly of microshells array into geometric figures of uppercase English letters “L” and “C” was successfully achieved. We hope that these findings can provide good application prospects for security pattern designs.
机译:胆甾型液晶(CLC)由于自发自组装成周期性螺旋结构的能力,因此表现出圆偏振(CP)光的选择性布拉格反射。球形胆甾型液晶(CLC)结构可能会朝潜在的安全应用生成光子交叉通信模式。为了使这些光学图案具有可调性,我们通过玻璃毛细管微流体技术制造了微壳形状的球形CLC布拉格反射器。在CLC壳的内部水核中结合了Fe3O4纳米颗粒的水溶性磁流体是造成非侵入性转运能力的原因。借助于外部磁场,通过改变一组磁性可移动和不可移动的球形CLC结构中的相互距离,可以识别相邻微壳和微滴之间的反射相互作用。在七个螺旋状微滴和微壳的密排六边形排列中,研究了随温度变化的光学反射图案,这些螺旋状旋性相反。此外,我们证明了成功实现了将微壳阵列磁场辅助组装成大写英文字母“ L”和“ C”的几何图形。我们希望这些发现可以为安全模式设计提供良好的应用前景。

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