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Soft network composite materials with deterministic and bio-inspired designs

机译:具有确定性和生物启发性设计的软网络复合材料

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摘要

Hard and soft structural composites found in biology provide inspiration for the design of advanced synthetic materials. Many examples of bio-inspired hard materials can be found in the literature; far less attention has been devoted to soft systems. Here we introduce deterministic routes to low-modulus thin film materials with stress/strain responses that can be tailored precisely to match the non-linear properties of biological tissues, with application opportunities that range from soft biomedical devices to constructs for tissue engineering. The approach combines a low-modulus matrix with an open, stretchable network as a structural reinforcement that can yield classes of composites with a wide range of desired mechanical responses, including anisotropic, spatially heterogeneous, hierarchical and self-similar designs. Demonstrative application examples in thin, skin-mounted electrophysiological sensors with mechanics precisely matched to the human epidermis and in soft, hydrogel-based vehicles for triggered drug release suggest their broad potential uses in biomedical devices.
机译:生物学中发现的硬和软结构复合材料为高级合成材料的设计提供了灵感。在文献中可以找到许多受生物启发的硬质材料的例子。对软系统的关注则很少。在这里,我们介绍了具有应力/应变响应的低模量薄膜材料的确定性途径,可以精确地定制该途径以匹配生物组织的非线性特性,其应用机会包括软生物医学设备到组织工程构造。该方法将低模量矩阵与开放的可拉伸网络结合在一起,作为结构增强件,可以产生具有广泛所需机械响应的复合材料类别,包括各向异性,空间异质,分层和自相似设计。具有与人体表皮精确匹配的薄型,皮肤安装式电生理传感器的示范应用示例,以及用于触发药物释放的基于水凝胶的软载体表明其在生物医学设备中的广泛应用。

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