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Robust, Reprocessable, and Reconfigurable Cellulose-Based Multiple Shape Memory Polymer Enabled by Dynamic Metal-Ligand Bonds

机译:由动态金属配体键能够实现的鲁棒,再驾合和可重新配置的基于纤维素的多种形状记忆聚合物

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摘要

Smart materials with multiple shape memory capacities have gradually attracted the interest of a lot of researchers due to their potential application in textiles, smart actuators, and aerospace engineering. However, the design and sustainable synthesis of multiple shape memory polymers (SMPs) simultaneously possessing robust mechanical strength, reprocessability, and reconfigurability still remain full of challenges. Starting from a readily available biomass material cellulose, a well-defined SMP, cellulose-graft-poly(n-butyl acrylate-co-1-vinylimidazole) copolymer (Cell-g-(BA-co-VI)) was facilely synthesized by addition-fragmentation chain transfer polymerization (RAFT) and the subsequent metallosupramolecular cross-linking. Taking advantage of the dynamic bonding, i.e., the rapid reversible fragmentation and the formation of metal ion-imidazole coordination, polymer networks with highly tunable mechanical properties, excellent solid-state plasticity, and quadruple-shape memory capacity are handily attainable. Microscopically, the metal-ligand clusters have a strong tendency to phase segregate from the soft grafted copolymers indicated by atomic force microscopy (AFM), and these serve as netpoints to construct novel SMPs. This article represents our new exploration of the next-generation SMPs based on cellulose backbone where carrying with supramolecular cross-linked soft grafted copolymers. This architecture design allows achieving robust, reprocessable, and reconfigurable thermoplastic SMPs that are difficult to realize by many other methods. Integrating these properties into one system in a synergetic manner also provides a novel approach to the high value addition application of cellulose in the fabrication of advanced functional materials.
机译:由于其在纺织品,智能执行器和航空航天工程中的潜在应用,具有多种形状记忆能力的智能材料逐渐吸引了很多研究人员的兴趣。然而,同时具有稳健的机械强度,再加工性和重新配置性的多种形状记忆聚合物(SMPS)的设计和可持续合成仍然是充满挑战。从容易获得的生物质材料纤维素,明确定义的SMP,纤维素 - 移植物 - 聚(正丁基丙烯酸二丁酯-CO-1-乙烯基咪唑)共聚物(Cell-G-(Ba-Co-VI))被综合地合成添加 - 碎片链转移聚合(筏)和随后的金属分子交联。利用动态键合,即快速可逆的碎片和金属离子 - 咪唑配位的形成,具有高可调谐机械性能的高分子网络,优异的固态可塑性和四重形状存储器容量是手气可达到的。显微镜地,金属 - 配体簇具有强的倾向于由由原子力显微镜(AFM)所示的软接枝共聚物的相分离,并且这些是基点构建新的SMP。本文代表了基于纤维素骨架的下一代SMP的新探索,其中携带超分子交联软接枝共聚物。这种架构设计允许通过许多其他方法实现难以实现的鲁棒,再驾合和可重新配置的热塑性SMP。以协同方式将这些性质集成到一个系统中,还提供了一种新的纤维素在制造先进的功能材料中的高价值添加施用的新方法。

著录项

  • 来源
    《ACS applied materials & interfaces》 |2020年第22期|共10页
  • 作者单位

    Shenzhen Univ Shenzhen Key Lab Polymer Sci &

    Technol Guangdong Res Ctr Interfacial Engn Funct Mat Coll Mat Sci &

    Engn Shenzhen 518060 Peoples R China;

    Shenzhen Univ Shenzhen Key Lab Polymer Sci &

    Technol Guangdong Res Ctr Interfacial Engn Funct Mat Coll Mat Sci &

    Engn Shenzhen 518060 Peoples R China;

    Shenzhen Univ Shenzhen Key Lab Polymer Sci &

    Technol Guangdong Res Ctr Interfacial Engn Funct Mat Coll Mat Sci &

    Engn Shenzhen 518060 Peoples R China;

    Anhui Agr Univ Biomass Mol Engn Ctr Hefei 230036 Anhui Peoples R China;

    Shenzhen Univ Shenzhen Key Lab Polymer Sci &

    Technol Guangdong Res Ctr Interfacial Engn Funct Mat Coll Mat Sci &

    Engn Shenzhen 518060 Peoples R China;

    Shenzhen Univ Shenzhen Key Lab Polymer Sci &

    Technol Guangdong Res Ctr Interfacial Engn Funct Mat Coll Mat Sci &

    Engn Shenzhen 518060 Peoples R China;

    Shenzhen Univ Shenzhen Key Lab Polymer Sci &

    Technol Guangdong Res Ctr Interfacial Engn Funct Mat Coll Mat Sci &

    Engn Shenzhen 518060 Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学工业;
  • 关键词

    cellulose-grafted copolymers; metal-ligand bonds; multiple shape memory polymer; solid-state plasticity; freestanding 3D shape;

    机译:纤维素接枝的共聚物;金属配体键;多种形状记忆聚合物;固态可塑性;独立式3D形状;

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