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Non-Equilibrium, Light-Adaptive, Steady-State Reconfiguration of Mechanical Patterns in Bioinspired Nanocomposites

机译:Bioinspired纳米复合材料中的非平衡,光自适应,稳态重新配置机械图案

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摘要

Abstract Bioinspired nanocomposites have made great progress for the fabrication of mechanical high‐performance structural materials, but their properties have thus far been engineered with a focus on static behavior. This contrasts profoundly with the dynamic reconfiguration often observed in living tissues. Here, a first concept is introduced for steady‐state, light‐adaptive reconfiguration of mechanical patterns in bioinspired nanocomposites under dissipative out‐of‐equilibrium conditions. This is realized for green, waterborne cellulose nanofibril/polymer nanopapers by achieving a heterogeneous activation of a photothermal effect. To this end, predefined mechanical patterns are designed by top‐down lamination of bottom‐up engineered bioinspired nanocomposites containing thermoreversible hydrogen bonds, as well as spatially selectively incorporated single‐walled carbon nanotubes for photothermal response. Global irradiation leads to localized photothermal softening by cascading light to heat, and to the dynamization and breakage of the thermoreversible supramolecular bonds, leading to macroscopic reconfiguration and even inversion of mechanical stiff/soft patterns. The altered configuration is only stable in a dissipative steady state and relaxes to the ground state once light is removed. The strategy presents a new approach harnessing the capabilities from top‐down and bottom‐up structuring, and by interfacing it with non‐equilibrium adaptivity concepts, it opens avenues for hierarchical bioinspired materials with anisotropic response in global fields.
机译:摘要BioInspired纳米复合材料在制造机械高性能结构材料方面取得了很大进展,但是它们的性质已经较小地设计,重点是静态行为。这种对比在活组织中经常观察到的动态重新配置对比。这里,引入第一概念,用于在耗散平衡条件下进行生物透明纳米复合材料中的机械图案的稳态,光自适应重新配置。这通过实现光热效应的异质活化来实现绿色,水性纤维素纳米纤维/聚合物纳米粉末。为此,通过含有热可逆氢键的自下而上的工程化生物定位纳米复合材料的自上而下的层压设计,以及空间选择性地掺入用于光热反应的单壁碳纳米管的自上而下的机械图案设计。全球辐射导致通过级联光热量和热可逆的超分子键的动态化和破损导致局部的光热软化,导致宏观重新配置甚至机械硬/柔软图案的反转。改变的配置在耗散稳定状态下仅稳定,一旦移除光,就会放松到地状态。该策略提出了一种新的方法,利用自上而下和自下而上的结构化的能力,并通过将其与非平衡适应性概念进行连接,它在全球领域的各向异性反应开启了具有各向异性反应的分层生物悬浮材料的途径。

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