• 摘要: 人工设计的纳米薄膜、超构表面等微纳光学器件,正在经历由单一功能向多功能集成、被动式器件向主动可调控器件的革命性转变。基于机械、电控、热控等调控方案的主动式微纳光学器件,在光谱滤波、光学聚焦、多维全息显示等功能的动态调控方面已经取得了令人瞩目的进展。然而,拓展主动式光学器件在现实场景中的应用,在响应速度、动态范围、调控面积等性能上仍存在亟待解决的挑战。水凝胶作为一种湿度响应的形变材料,将其制备成微纳结构,利用其随湿度变化在纳米尺度下体积膨胀,能够连续地调整结构的光学响应,兼具响应速度快、易于实施、调控范围大等优点,为微纳光学器件的主动调控提供了革新性方案。本文从水凝胶材料的微纳加工技术出发,系统综述了各种水凝胶微纳结构在动态光学调控能力,以及在动态滤波、动态多功能光学显示、动态荧光辐射等方向的功能性应用。最后,对全文进行了总结和讨论,并分析了水凝胶微纳光学器件所面临的挑战和未来发展方向。

       

      Abstract: Artificially designed micro-nano optical devices, such as nanofilms and metasurfaces, are undergoing a revolutionary shift from single-function to multi-function integration, and from passive devices to active ones. Active micro-nano optical devices based on mechanical, electrical, thermal, and other control mechanisms have made impressive progress in dynamically controlling functionalities such as spectral filtering, optical focusing, multidimensional holographic display. However, to enable the broader adoption of active optical devices in real-world scenarios, significant challenges remain in terms of response speed, dynamic range, control area, and other performance aspects. Hydrogel, as a humidity-responsive deformation material, can be fabricated into micro-nano structures that continuously tune their optical response through the nanoscale volumetric expansion driven by ambient humidity variation. The hydrogel micro-nanostructures offer the advantages of rapid response speed, facile fabrication, and wide tuning range, providing an innovative solution for the active control of micro-nano optical devices. This paper starts from the micro-nano fabrication technology of hydrogel materials, proceeding to a systematic review of the dynamic optical tuning capabilities of hydrogel micro-nanostructures and their functional applications such as dynamic filtering, dynamic multifunctional optical display, dynamic fluorescence emission. Finally, we summarize and discuss the full text content and analyze the challenges and future directions of hydrogel micro-nano optical devices.