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Recyclable Shape-Memory Waterborne Polyurethane Films Based on Perylene Bisimide Modified Polycaprolactone Diol

机译:基于Pernenne Bisimide改性聚己内酯二醇的可回收形状记忆水性聚氨酯膜

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摘要

Currently, much attention is given to the functionality and recyclability of waterborne polyurethane (WPU). Herein, ε-caprolactone was used as a chain extender for grafting onto perylene bisimide (PBI) and 1,4-butanediol (BDO) via ring-opening reactions to obtain PBI-PCL and BDO- PCL. Then, two kinds of WPU, namely PBI-WPU (PWPU) and BDO-WPU (BWPU), were fabricated using PBI-PCL/polytetrahydrofuran ether glycol (PTMG) and BDO-PCL/PTMG, respectively, as mixed soft segments. The properties and appearance of PWPU and BWPU emulsions were analyzed in terms of particle size, zeta potential and TEM images, and the results showed that PWPU emulsions had uniform particle size distribution and decent storage stability. AFM and DMA results revealed that PWPU films possessed a more significant degree of microphase separation and a higher glass transition temperature (Tg) than BWPU films. The PWPU films displayed good shape-memory and mechanical properties, with tensile strength up to 58.25 MPa and elongation at break up to 1241.36%. TGA analysis indicated that PWPU films had better thermal stability than BWPU films. More importantly, the PWPU films could be dissolved in a mixed solvent of acetone/ethanol (v/v = 2:1) at room temperature. The dissolved PWPU could be dispersed in deionized water to prepare waterborne polyurethane again. After the recycling process was repeated three times, the recycled PWPU emulsion still exhibited good storage stability. The recycled PWPU films maintained their original thermal and mechanical properties. Comparing the properties of BWPU and PWPU showed that the soft segment structure had important influence on waterborne polyurethane performance. Therefore, PWPU may have great potential applications in making recycling and shape-memory coating or paint.
机译:目前,对水性聚氨酯(WPU)的功能和可回收性提供了很多关注。在此,使用ε-己内酯作为链增量剂,通过开环反应将PBI-PCL和BDO-PCL接枝到PERNENE双酰胺(PBI)和1,4-丁二醇(BDO)上。然后,使用PBI-PCL /聚四氢呋喃醚二醇(PTMG)和BDO-PCL / PTMG作为混合软段,制造两种WPU,即PBI-WPU(PWPU)和BDO-WPU(BWPU)。在粒度,Zeta电位和TEM图像方面分析了PWPU和BWPU乳液的性质和外观,结果表明,PWPU乳液具有均匀的粒度分布和体面的储存稳定性。 AFM和DMA结果表明,PWPU薄膜具有比BWPU薄膜更高的微单分离和更高的玻璃化转变温度(Tg)。 PWPU薄膜显示出良好的形状记忆和机械性能,抗拉强度高达58.25MPa,断裂伸长率高达1241.36%。 TGA分析表明,PWPU薄膜具有比BWPU薄膜更好的热稳定性。更重要的是,在室温下可以将PWPU膜溶解在丙酮/乙醇(v / v = 2:1)的混合溶剂中。溶解的PWPU可以分散在去离子水中以再次制备水性聚氨酯。重复回收过程三次后,再生的PWPU乳液仍然表现出良好的储存稳定性。再生的PWPU薄膜保持原始的热和机械性能。比较BWPU和PWPU的性质表明,软段结构对水性聚氨酯性能具有重要影响。因此,PWPU可能具有巨大的潜在应用,在制造回收和形状记忆涂层或涂料时。

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