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首页> 外文期刊>RSC Advances >Facile preparation of degradable multi-arm-star-branched waterborne polyurethane with bio-based tannic acid
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Facile preparation of degradable multi-arm-star-branched waterborne polyurethane with bio-based tannic acid

机译:生物基鞣酸方便地制备可降解多臂星形支链水性聚氨酯

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In this research, biodegradable multi-arm-star-branched waterborne polyurethanes (MWPUs) were prepared by incorporation of bio-based material (tannic acid, TA) in the structure of waterborne polyurethanes. The prepared MWPUs were characterized by UV-vis spectrometry and FT-IR spectrometry, confirming the presence of TA in MWPUs. The results of DSC and TGA demonstrated that the incorporation of TA remarkably enhanced the thermal stability of MWPUs. The mechanical strength test indicated that the Young's modulus and tensile strength of the waterborne polyurethanes after incorporation of TA were significantly improved due to the increase of structural rigidity, hydrogen bonding and the molecular interactions of the TA-based MWPU chains. In addition, the synthesized TA-based MWPUs also exhibited excellent antioxidation capacity and outstanding biodegradation property. Given these excellent properties and the sustainability of TA, the developed TA-based MWPUs exhibited great potential in a wide range of practical applications.
机译:在这项研究中,通过将生物基材料(鞣酸,TA)掺入水性聚氨酯的结构中,制备了可生物降解的多臂星形支链水性聚氨酯(MWPU)。通过紫外可见光谱和FT-IR光谱对制备的MWPU进行表征,证实了MWPU中TA的存在。 DSC和TGA的结果表明,TA的引入显着增强了MWPU的热稳定性。机械强度测试表明,由于结构刚度,氢键和基于TA的MWPU链的分子相互作用的增加,加入TA后的水性聚氨酯的杨氏模量和拉伸强度显着提高。另外,合成的基于TA的MWPU还表现出优异的抗氧化能力和优异的生物降解性能。鉴于这些优异的特性和TA的可持续性,开发的基于TA的MWPU在广泛的实际应用中显示出巨大的潜力。

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