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Optical Nanoprinting of Colloidal Particles and Functional Structures

机译:胶体颗粒和功能结构的光学纳米框

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摘要

Recent advances in chemical sciences have enabled the tailorable synthesis of colloidal particles with variable composition, size, shape, and properties. Building superstructures with colloidal particles as building blocks is appealing for the fabrication of functional metamaterials and nanodevices. Optical nanoprinting provides a versatile platform to print various particles into arbitrary configurations with nanometric precision. In this review, we summarize recent progress in optical nanoprinting of colloidal particles and its related applications. Diverse techniques based on different physical mechanisms, including optical forces, light controlled electric fields, optothermal effects, laser-directed thermocapillary flows, and photochemical reactions, are discussed in detail. With its flexible and versatile capabilities, optical nanoprinting will find promising applications in numerous fields such as nanophotonics, energy, microelectronics, and nanomedicine.
机译:化学科学的最近进步使得可根据可变组合物,尺寸,形状和性质可定制合成胶体颗粒。 建筑用胶体颗粒作为构建块的上层建筑是吸引功能性超材料和纳米型的制造。 光学纳米罩提供通用平台,可将各种颗粒印刷成具有纳米镜精度的任意配置。 在本文中,我们总结了胶体颗粒光学纳米图中的最近进展及其相关应用。 详细讨论了基于不同物理机制的不同技术,包括光力,光控电场,光学效应,激光引导的热量施用和光化学反应。 凭借其灵活且多功能的能力,光学纳米罩将在众多领域中找到有希望的应用,例如纳米光电学,能量,微电子和纳米医生。

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