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Rapid electrostatics-assisted layer-by-layer assembly of near-infrared active colloidal photonic crystals

机译:快速静电辅助的近红外活性胶体光子晶体的逐层组装

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摘要

Here we report a rapid and scalable bottom-up technique for layer-by-layer (LBL) assembling near-infrared-active colloidal photonic crystals consisting of large (>= 1 mu m) silica microspheres. By combining a new electrostatics-assisted colloidal transferring approach with spontaneous colloidal crystallization at an air/water interface, we have demonstrated that the crystal transfer speed of traditional Langmuir-Blodgett-based colloidal assembly technologies can be enhanced by nearly 2 orders of magnitude. Importantly, the crystalline quality of the resultant photonic crystals is not compromised by this rapid colloidal assembly approach. They exhibit thickness-dependent near-infrared stop bands and welldefined Fabry-Perot fringes in the specular transmission and reflection spectra, which match well with the theoretical calculations using a scalar-wave approximation model and Fabry-Perot analysis. This simple yet scalable bottom-up technology can significantly improve the throughput in assembling large area, multilayer colloidal crystals, which are of great technological importance in a variety of optical and non-optical applications ranging from all-optical integrated circuits to tissue engineering. (C) 2016 Elsevier Inc. All rights reserved.
机译:在这里,我们报告了一种快速且可扩展的自下而上的技术,用于组装由大(> = 1μm)二氧化硅微球组成的近红外活性胶体光子晶体。通过将新的静电辅助胶体转移方法与空气/水界面处的自发性胶体结晶相结合,我们证明了基于Langmuir-Blodgett的传统胶体组装技术的晶体转移速度可提高近2个数量级。重要的是,这种快速的胶体组装方法不会损害所得光子晶体的晶体质量。它们在镜面透射和反射光谱中表现出与厚度有关的近红外阻带和清晰定义的Fabry-Perot条纹,这与使用标波近似模型和Fabry-Perot分析的理论计算非常吻合。这种简单但可扩展的自下而上的技术可以显着提高组装大面积多层胶体晶体的产量,这在从全光集成电路到组织工程的各种光学和非光学应用中都具有重要的技术意义。 (C)2016 Elsevier Inc.保留所有权利。

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