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将表面组装的水凝胶预聚物光接枝到弹性体基材上以制备刺激响应性微透镜阵列

Photografting of Surface-assembled Hydrogel Prepolymers to Elastomeric Substrates for Production of Stimuli-Responsive Microlens Arrays.

作者信息

Kapitan John M, Minnick Grayson, Watts Brennan P, Huang Nengjian, Rose Mark A, Yang Ruiguo, Morin Stephen A

机构信息

Department of Chemistry, University of Nebraska-Lincoln, Lincoln, NE 68588, USA.

Department of Mechanical and Materials Engineering, University of Nebraska-Lincoln, Lincoln, NE 68588, USA.

出版信息

Adv Funct Mater. 2024 Jan 15;34(3). doi: 10.1002/adfm.202305711. Epub 2023 Sep 3.

Abstract

Hydrogels have emerged as prototypical stimuli-responsive materials with potential applications in soft robotics, microfluidics, tissue engineering, and adaptive optics. To leverage the full potential of these materials, fabrication techniques capable of simultaneous control of microstructure, device architecture, and interfacial stability, i.e., adhesion of hydrogel components to support substrates, are needed. A universal strategy for the microfabrication of hydrogel-based devices with robust substrate adhesion amenable to use in liquid environments would enable numerous applications. This manuscript reports a general approach for the facile production of covalently attached, ordered arrays of microscale hydrogels (microgels) on silicone supports. Specifically, silicone-based templates were used to: i) drive mechanical assembly of prepolymer droplets into well-defined geometries and morphologies, and ii) present appropriate conjugation moieties to fix gels in place during photoinitiated crosslinking via a "graft from" polymerization scheme. Automated processing enabled rapid microgel array production for characterization, testing, and application. Furthermore, the stimuli-responsive microlensing properties of these arrays, via contractile modulated refractive index, were demonstrated. This process is directly applicable to the fabrication of adaptive optofluidic systems and can be further applied to advanced functional systems such as soft actuators and robotics and 3D cell culture technologies.

摘要

水凝胶已成为典型的刺激响应材料,在软机器人技术、微流体、组织工程和自适应光学等领域具有潜在应用。为了充分发挥这些材料的潜力,需要能够同时控制微观结构、器件架构和界面稳定性(即水凝胶组件与支撑基板的粘附)的制造技术。一种用于制造具有强大基板粘附力且适用于液体环境的水凝胶基器件的通用微制造策略将实现众多应用。本手稿报道了一种在硅酮支撑物上轻松生产共价连接的微尺度水凝胶(微凝胶)有序阵列的通用方法。具体而言,基于硅酮的模板用于:i)将预聚物液滴机械组装成明确的几何形状和形态,以及ii)通过“从接枝”聚合方案在光引发交联过程中提供合适的共轭部分以固定凝胶。自动化处理能够快速生产微凝胶阵列以进行表征、测试和应用。此外,还展示了这些阵列通过收缩调制折射率的刺激响应微透镜特性。该过程可直接应用于自适应光流体系统的制造,并可进一步应用于诸如软致动器、机器人技术和3D细胞培养技术等先进功能系统。

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