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Diffusive Motion of Linear Microgel Assemblies in Solution

机译:溶液中线性微凝胶组件的扩散运动

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摘要

Due to the ability of microgels to rapidly contract and expand in response to external stimuli, assemblies of interconnected microgels are promising for actuation applications, e.g., as contracting fibers for artificial muscles. Among the properties determining the suitability of microgel assemblies for actuation are mechanical parameters such as bending stiffness and mobility. Here, we study the properties of linear, one-dimensional chains of poly(N-vinylcaprolactam) microgels dispersed in water. They were fabricated by utilizing wrinkled surfaces as templates and UV-cross-linking the microgels. We image the shapes of the chains on surfaces and in solution using atomic force microscopy (AFM) and fluorescence microscopy, respectively. In solution, the chains are observed to execute translational and rotational diffusive motions. Evaluation of the motions yields translational and rotational diffusion coefficients and, from the translational diffusion coefficient, the chain mobility. The microgel chains show no perceptible bending, which yields a lower limit on their bending stiffness.
机译:由于微凝胶响应于外部刺激而迅速收缩和膨胀的能力,互连的微凝胶的组装有望用于致动应用,例如,作为人造肌肉的收缩纤维。确定微凝胶组件是否适合驱动的特性包括机械参数,例如弯曲刚度和迁移率。在这里,我们研究分散在水中的聚(N-乙烯基己内酰胺)微凝胶的线性,一维链的性质。它们是通过使用起皱的表面作为模板并通过UV交联微凝胶而制成的。我们分别使用原子力显微镜(AFM)和荧光显微镜对表面和溶液中链的形状进行成像。在解决方案中,观察到链条执行平移和旋转扩散运动。对运动的评估得出平移和旋转扩散系数,并从平移扩散系数得出链的迁移率。微凝胶链没有可见的弯曲,这对其弯曲刚度产生了下限。

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