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通过局部锁相策略制备具有超高模量的可拉伸自修复塑料聚氨酯

Stretchable Self-Healing Plastic Polyurethane with Super-High Modulus by Local Phase-Lock Strategy.

作者信息

Shao Jianming, Dong Xia, Wang Dujin

机构信息

Beijing National Laboratory for Molecular Science, CAS Key Laboratory of Engineering Plastics, Institute of Chemistry, Chinese Academy of Sciences, Beijing, 100190, P. R. China.

University of Chinese Academy of Sciences, Beijing, 100049, P. R. China.

出版信息

Macromol Rapid Commun. 2023 Jan;44(1):e2200299. doi: 10.1002/marc.202200299. Epub 2022 Jun 16.

DOI:10.1002/marc.202200299
PMID:35656715
Abstract

In this work, a multiblock polyurethane (PU-Im) consisting of polyether and polyurethane segments with imidazole dangling groups is demonstrated, which can further coordinate with Ni . By controlling the ligand content and metal-ligand stoichiometry ratio, PU-Im-Ni complex with vastly different mechanical behavior can be obtained. The elastomer PU-2Im-Ni has extraordinary mechanical strength (61MPa) and excellent toughness (420 MJ m ), but the plastic PU-4Im-Ni exhibits super-high modulus (515 MPa), strength (63 MPa), and good stretchability (≈800%). The metal-ligand interaction between polyurethane segments and Ni is proved by Raman spectra, dynamic mechanical analysis (DMA), and transmission electron microscopy (TEM). The polyurethane segments domain formed by microphase separation is dynamically "locked" by Ni coordinated with imidazole, revealing a local phase-lock effect. The phase-locking hard domains reinforce the PU-Im-Ni complex and maintain stimuli-responsive self-healing ability, while the free polyether segments provide stretchability. Primarily, the water environment with plasticization effect serves as an effective and eco-friendly self-healing approach for PU-Im-Ni plastic. With the excellent mechanical performance, thermal/aquatic self-healing ability, and unique damping properties, the PU-Im-Ni complexes show potential applications in self-healing engineering plastic and cushion protection fields.

摘要

在这项工作中,展示了一种由聚醚和带有咪唑悬挂基团的聚氨酯链段组成的多嵌段聚氨酯(PU-Im),它可以进一步与镍配位。通过控制配体含量和金属-配体化学计量比,可以获得具有截然不同力学行为的PU-Im-Ni配合物。弹性体PU-2Im-Ni具有非凡的机械强度(61MPa)和出色的韧性(420 MJ/m³),但塑性PU-4Im-Ni表现出超高模量(515 MPa)、强度(63 MPa)和良好的拉伸性(≈800%)。通过拉曼光谱、动态力学分析(DMA)和透射电子显微镜(TEM)证明了聚氨酯链段与镍之间的金属-配体相互作用。由微相分离形成的聚氨酯链段区域被与咪唑配位的镍动态“锁定”,揭示了局部相锁定效应。相锁定硬域增强了PU-Im-Ni配合物并保持刺激响应自愈合能力,而游离的聚醚链段提供拉伸性。首先,具有增塑作用的水环境是PU-Im-Ni塑料一种有效且环保的自愈合方法。凭借出色的机械性能、热/水自愈合能力和独特的阻尼特性,PU-Im-Ni配合物在自愈合工程塑料和缓冲保护领域显示出潜在应用。

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