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水凝胶铆钉的单向形状变形及其在柔性机械装配中的应用。

Hydrogel Rivet with Unidirectional Shape Morphing for Flexible Mechanical Assembly.

机构信息

Ningbo Hanvos Kent School, Ningbo, 315200, China.

Georgia School Ningbo, Ningbo, 315000, China.

出版信息

Macromol Rapid Commun. 2024 Mar;45(5):e2300586. doi: 10.1002/marc.202300586. Epub 2023 Nov 27.

Abstract

Integrating diverse materials and functions into highly additive produce has piqued global interest due to the increasing demands of intelligent soft robotics. Nevertheless, existing assembly techniques, especially supramolecular assembly which heavily rely on precise chemical design and specific recognition, may prove inadequate when confronted with diverse external demands. Inspired by the traditional mechanical assembly, rivet connection, herein, a thermo-responsive hydrogel with unidirectional shape-morphing is fabricated and a stable mechanical assembly is constructed by emulating the rivet connection mechanism. This system employed poly(acrylamide-co-acrylic acid) [P(AAm-co-AAc)] to induce continuous swelling and hexylamine-modified polyvinyl alcohol (PVA-C6) as a molecular switch to control the swelling process. The hydrogel rivet, initially threaded through pre-fabricated hollows in two components. Subsequently, upon the disassociation of alkane chains the molecular switch would activate, inducing swelling and stable mechanical assembly via anchor structures. Moreover, to enhance the assembly strength, knots are introduced to enhance assembly strength, guiding localized stress release for programmed deformations. Additionally, the system can be remotely controlled using near-infrared light (NIR) by incorporating photo-thermal nanoparticles. This work presents a universal and efficient strategy for constructing stable mechanical assemblies without compromising overall softness, offering significant potential for the fabrication of integrated soft robots.

摘要

由于智能软机器人需求的不断增加,将不同的材料和功能集成到高度可加性的产品中引起了全球的兴趣。然而,现有的组装技术,特别是严重依赖精确化学设计和特定识别的超分子组装,在面对多样化的外部需求时可能证明是不够的。受传统机械装配的启发,在此,制备了一种具有单向形状变形能力的热响应水凝胶,并通过模拟铆钉连接机制构建了稳定的机械装配。该系统采用聚丙烯酰胺-丙烯酸共聚物[P(AAm-co-AAc)]诱导连续溶胀,并用己基胺改性聚乙烯醇(PVA-C6)作为分子开关来控制溶胀过程。水凝胶铆钉最初穿过两个组件中预先制造的空心部分。随后,烷链解缔合时,分子开关会激活,通过锚定结构诱导溶胀和稳定的机械装配。此外,为了增强组装强度,引入了绳结来增强组装强度,从而引导局部应力释放以实现编程变形。此外,该系统还可以通过加入光热纳米粒子,使用近红外光(NIR)进行远程控制。这项工作提出了一种通用且高效的构建稳定机械装配的策略,而不会牺牲整体柔软性,为集成软机器人的制造提供了巨大的潜力。

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