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用于微透镜阵列柔性制造的动态水凝胶的光调控微结构生长

Light-Regulated Microstructure Growth of Dynamic Hydrogels for Flexible Manufacturing of Microlens Arrays.

作者信息

Chen Di, Wang Huijie, Ni Chujun, Chen Jingye, Guo Yujun, Chen Zhe, Zheng Ning, Wu Jingjun, Ren Hua, Zhao Qian

机构信息

Ningbo Innovation Center, Zhejiang University, Ningbo 315100, China.

State Key Laboratory of Chemical Engineering, College of Chemical and Biological Engineering, Zhejiang University, Hangzhou 310058, China.

出版信息

Chem Bio Eng. 2025 Mar 26;2(6):350-357. doi: 10.1021/cbe.5c00007. eCollection 2025 Jun 26.

Abstract

Microlenses are the basis of diverse modern instruments, which demand for more flexible fabrication. Thermal reflowing after photolithography of non-cross-linked polymers is the most widely applied strategy for manufacturing final products or primary molds of microlenses with desired microcurvatures. However, this approach can commonly form only one specific curvature for the same precursor system, lacking manufacturing flexibility. Here we report the direct growth of microstructures with flexible control of the curvature after one-step photolithography. This method relies on spatial UV irradiation, which induces network rearrangements in a dynamically cross-linked hydrogel. Upon subsequent water swelling, the irradiated locations develop microstructures with tunable curvature controlled by the irradiation time. Following by a secondary ionic cross-linking, the hydrogels are mechanically strengthened for practical microlens replication. Consequently, microlens arrays with a roughness around 20 nm are rapidly molded from the hydrogel templates. Multiple focuses are uniformly projected on a targeted plane, indicating the fine imaging capability of the microlenses. Moreover, the focal lengths are facilely adjustable not only in a wide range but also in a spatially selective manner. Our growth strategy paves a versatile and efficient method for the flexible fabrication of functional optical devices.

摘要

微透镜是各种现代仪器的基础,这些仪器需要更灵活的制造工艺。对未交联聚合物进行光刻后进行热回流是制造具有所需微曲率的微透镜最终产品或初级模具应用最广泛的策略。然而,这种方法通常只能为同一前驱体系统形成一种特定的曲率,缺乏制造灵活性。在此,我们报道了一种在一步光刻后对曲率进行灵活控制的微结构直接生长方法。该方法依赖于空间紫外线照射,它能在动态交联水凝胶中诱导网络重排。随后在水膨胀过程中,受辐照部位会形成曲率可调的微结构,其曲率由辐照时间控制。经过二次离子交联后,水凝胶得到机械强化,可用于实际的微透镜复制。因此,能从水凝胶模板快速模制出粗糙度约为20纳米的微透镜阵列。多个焦点均匀地投射在目标平面上,表明微透镜具有良好的成像能力。此外,焦距不仅可以在很宽的范围内轻松调节,还可以在空间上进行选择性调节。我们的生长策略为灵活制造功能性光学器件铺平了一条通用且高效的道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bc5b/12207276/416977622405/be5c00007_0001.jpg

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