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首页> 外文期刊>Angewandte Chemie >Surface Molding of Microscale Hydrogels with Microactuation Functionality
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Surface Molding of Microscale Hydrogels with Microactuation Functionality

机译:微观水凝胶的表面成型与微动功能

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摘要

This work describes the fabrication of numerous hydrogel microstructures (mu-gels) via a process called surface molding. Chemically patterned elastomeric-assembly substrates were used to organize and manipulate the geometry of liquid prepolymer microdroplets, which, following photo-initiated crosslinking, maintained the desired morphology. By adjusting the state of strain during the crosslinking process, a continua of structures could be created using one pattern. These arrays of -gels have stimuli-responsive properties that are directly applicable to actuation where the basis shape and array geometry of the mu-gels can be used to rationally generate microactuators with programmed motions. As a method, surface molding, represents a powerful addition to the soft-lithographic toolset that can be readily applied to the simultaneous synthesis of large numbers of geometrically and functionally distinct polymeric microstructures.
机译:该工作描述了通过称为表面成型的过程的许多水凝胶微结构(MU凝胶)的制造。 化学图案化的弹性组装衬底用于组织和操纵液体预聚物微量滴体的几何形状,其在光引发的交联之后保持所需的形态。 通过在交联过程中调整应变状态,可以使用一种图案来创建一个结构的连续结构。 这些-GEL阵列具有刺激响应性,可直接适用于MU-GEL的基础形状和阵列几何形状的致动,可用于具有编程运动的基础形状和赋予微致动器。 作为一种方法,表面成型,代表了软光刻工具集的强力补充,其可以容易地应用于大量几何和功能性不同的聚合物微结构的同时合成。

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