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Achievement of Both Mechanical Properties and Intrinsic Self-Healing under Body Temperature in Polyurethane Elastomers: A Synthesis Strategy from Waterborne Polymers

机译:聚氨酯弹性体中体温下的机械性能和内在自愈的成就:水性聚合物的合成策略

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Inspired by the growing demand for smart and environmentally friendly polymer materials, we employed 2,2′-disulfanediyldianiline (22DTDA) as a chain extender to synthesize a waterborne polyurethane (WPUR). Due to the ortho-substituted structure of the aromatic disulfide, the urea moieties formed a unique microphase structure in the WPUR, its mechanical strength was enhanced more 180 times relative to that of the material prepared without 22DTDA, and excellent self-healing abilities at body temperature in air or under ultrasound in water were obtained. If the self-healing process was carried out at 37 °C, 50 °C or under ultrasound, the ultimate tensile strength and elongation at break of the healed film could reach 13.8 MPa and 1150%, 15.4 MPa and 1215%, or 16 MPa and 1056%, respectively. Moreover, the WPUR films could be re-healed at the same fracture location over three cutting–healing cycles, and the recovery rates of the tensile strength and elongation at break remained almost constant throughout these cycles.
机译:灵感灵感来自对智能和环保聚合物材料不断增长的需求,我们使用2,2'-二磺酰二丽霉素(22dTDA)作为链增量剂以合成水性聚氨酯(WPUR)。由于芳族二硫化物的邻替代结构,尿素部分在WPUR中形成了独特的磁屏结构,其机械强度相对于没有22dTDA制备的材料的更高180次,以及身体的优异的自我愈合能力。获得空气中的温度或在水中的超声中获得。如果在37℃,50℃或超声波下进行自愈过程,则愈合膜的突破的最终拉伸强度和伸长率可达到13.8MPa和1150%,15.4MPa和1215%,或16MPa分别为1056%。此外,在三个切割愈合循环中可以在相同的断裂位置重新愈合WPUR膜,并且在这些循环中,抗拉强度和断裂处的伸长率的回收率几乎恒定。

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