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From the Cover: Programming function into mechanical forms by directed assembly of silk bulk materials

机译:从封面开始:通过直接组装丝绸散装材料将功能编程为机械形式

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摘要

We report simple, water-based fabrication methods based on protein self-assembly to generate 3D silk fibroin bulk materials that can be easily hybridized with water-soluble molecules to obtain multiple solid formats with predesigned functions. Controlling self-assembly leads to robust, machinable formats that exhibit thermoplastic behavior consenting material reshaping at the nanoscale, microscale, and macroscale. We illustrate the versatility of the approach by realizing demonstrator devices where large silk monoliths can be generated, polished, and reshaped into functional mechanical components that can be nanopatterned, embed optical function, heated on demand in response to infrared light, or can visualize mechanical failure through colorimetric chemistries embedded in the assembled (bulk) protein matrix. Finally, we show an enzyme-loaded solid mechanical part, illustrating the ability to incorporate biological function within the bulk material with possible utility for sustained release in robust, programmably shapeable mechanical formats.
机译:我们报告了基于蛋白质自组装的简单水基制造方法,可生成3D丝素蛋白散装材料,该材料可轻松与水溶性分子杂交以获得具有预先设计功能的多种固体形式。控制自组装会产生健壮的,可加工的形式,这些形式表现出热可塑性的特性,可以在纳米级,微米级和宏观级重塑材料。我们通过实现演示器设备来说明该方法的多功能性,在该演示器设备中,可以生成,抛光大的丝绸整料并将其整形为功能性机械组件,这些组件可以进行纳米图案化,嵌入光学功能,根据需要对红外光进行加热或可视化机械故障通过比色化学方法嵌入组装的(本体)蛋白质基质中。最后,我们显示了一种酶负载的固体机械部件,说明了将生物学功能整合到散装材料中的能力,并可能以健壮,可编程的机械形式持续释放。

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