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通过构建动态交联网络实现碳纳米管/乙烯-醋酸乙烯酯共聚物复合材料的永久形状重构和局部可逆驱动

Permanent Shape Reconfiguration and Locally Reversible Actuation of a Carbon Nanotube/Ethylene Vinyl Acetate Copolymer Composite by Constructing a Dynamic Cross-Linked Network.

作者信息

Ma Rui-Yu, Sun Wen-Jin, Xu Ling, Jia Li-Chuan, Yan Ding-Xiang, Li Zhong-Ming

机构信息

College of Polymer Science and Engineering, State Key Laboratory of Polymer Materials Engineering, Sichuan University, Chengdu 610065, China.

School of Aeronautics and Astronautics, Sichuan University, Chengdu 610065, China.

出版信息

ACS Appl Mater Interfaces. 2023 Aug 30;15(34):40954-40962. doi: 10.1021/acsami.3c07931. Epub 2023 Aug 16.

Abstract

Given the rapid developments in modern devices, there is an urgent need for shape-memory polymer composites (SMPCs) in soft robots and other fields. However, it remains a challenge to endow SMPCs with both a reconfigurable permanent shape and a locally reversible shape transformation. Herein, a dynamic cross-linked network was facilely constructed in carbon nanotube/ethylene vinyl acetate copolymer (CNT/EVA) composites by designing the molecular structure of EVA. The CNT/EVA composite with 0.05 wt % CNT realized a steady-state temperature of ∼75 °C under 0.11 W/cm light intensity, which gave rise to remote actuation behavior. The dynamic cross-linked network along with a wide melting temperature offered opportunities for chemical and physical programming, thus realizing the achievement of the programmable three-dimensional (3D) structure and locally reversible actuation. Specifically, the CNT/EVA composite exhibited a superior permanent shape reconfiguration by activating the dynamic cross-linked network at 140 °C. The composite also showed a high reversible deformation rate of 11.1%. These features endowed the composites with the capability of transformation to 3D structure as well as locally reversible actuation performance. This work provides an attractive guideline for the future design of SMPCs with sophisticated structures and actuation capability.

摘要

鉴于现代设备的快速发展,软机器人和其他领域迫切需要形状记忆聚合物复合材料(SMPC)。然而,赋予SMPC可重构的永久形状和局部可逆的形状转变仍然是一个挑战。在此,通过设计乙烯 - 醋酸乙烯酯共聚物(EVA)的分子结构,在碳纳米管/乙烯 - 醋酸乙烯酯共聚物(CNT/EVA)复合材料中轻松构建了动态交联网络。含0.05 wt% CNT的CNT/EVA复合材料在0.11 W/cm的光强度下实现了约75°C的稳态温度,从而产生了远程驱动行为。动态交联网络以及较宽的熔化温度为化学和物理编程提供了机会,从而实现了可编程三维(3D)结构和局部可逆驱动。具体而言,CNT/EVA复合材料通过在140°C下激活动态交联网络表现出优异的永久形状重构。该复合材料还显示出11.1%的高可逆变形率。这些特性赋予了复合材料转变为3D结构的能力以及局部可逆驱动性能。这项工作为未来设计具有复杂结构和驱动能力的SMPC提供了有吸引力的指导方针。

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