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Controlled self-assembly of Langmuir-Blodgett colloidal crystal films of monodispersed silica particles on non-planar substrates

机译:非平面衬底上单分散二氧化硅颗粒的Langmuir-Blodgett胶体晶体胶片的控制自组装

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摘要

We demonstrate the capabilities of the surface pressure-controlled Langmuir-Blodgett method for the deposition of large-area and highly ordered colloidal crystal films made from monodispersed silica particles having diameters of 600 nm onto flexible polymer sheet and highly-curved light bulb and optical fiber cable surfaces. Via the subsequent addition of an appropriate optical adhesive, our processing results in the formation of highly robust films on the various substrates which can be easily handled without introducing damage. Importantly, we demonstrate that due to the highly ordered nature of the particle films and the residual refractive index contrast that is present in the final composite structures, all films retain at least some of the highly desirable anti-reflective and diffractive properties exhibited by analogous films deposited onto flat substrates. This work opens up the possibility of using colloidal crystal films to induce a range of interesting and potentially commercially significant properties on flat and highly-curved, real-sized, shaped device structures.
机译:我们展示了表面压力控制的Langmuir-Blodgett方法的能力,用于沉积由直径为600nm的单分散二氧化硅颗粒的大面积和高度有序的胶体薄膜,在柔性聚合物片和高曲线和光纤上电缆表面。通过随后加入适当的光学粘合剂,我们的处理导致在各种基板上形成高稳健的薄膜,这可以在不引入损坏的情况下容易地处理。重要的是,我们证明,由于颗粒膜的高度有序性和最终复合结构中存在的残余折射率对比度,所有膜保持至少一些由类似膜表现出的非常理想的抗反射和衍射性能沉积在平底上。这项工作开辟了使用胶体晶体薄膜在扁平和高弯曲的真实尺寸的形状的装置结构上诱导一系列有趣和潜在商业上具有潜在商业上的性质的可能性。

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