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Effect of castor oil/polycaprolactone hybrid polyols on the properties of biopolyurethane

机译:蓖麻油/聚己内酯杂化多元醇对生物聚氨酯性能的影响

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Organic solvent soluble castor oil/polycaprolactone diol (PCL) based polyurethane for artificial leather was prepared by a one-step polymerization with 4,4'-diphenylmethane diisocyanate (MDI) at different castor oil contents. The PCL and MDI acted as soft and hard segments, respectively, and the castor oil acted as a dendritic point in the castor oil/PCL based polyurethane structure. The tensile properties and shape memory of castor oil/PCL based polyurethane were enhanced remarkably, compared with the PCL based polyurethane because of the increased hard segment portion and crosslinking density by the three urethane bonds formed per molecule in the castor oil/PCL mixed system. The dynamic mechanical analysis showed that the storage modulus of castor oil/PCL based polyurethanes increased with increasing castor oil content. In the enzymatic degradation test, castor oil/PCL based polyurethane degraded faster than conventional petroleum based polyurethane. This research suggests the potential to use the castor oil/PCL based polyurethane as a biobased coating materials.
机译:通过与不同蓖麻油含量的4,4'-二苯基甲烷二异氰酸酯(MDI)一步聚合,制备了用于人造革的有机溶剂可溶性蓖麻油/聚己内酯二醇(PCL)基聚氨酯。 PCL和MDI分别充当软链段和硬链段,并且蓖麻油充当基于蓖麻油/ PCL的聚氨酯结构中的树突点。与基于PCL的聚氨酯相比,由于基于蓖麻油/ PCL的混合体系中每个分子形成的三个氨基甲酸酯键增加了硬链段部分和交联密度,因此与基于PCL的聚氨酯相比,蓖麻油/基于PCL的聚氨酯的拉伸性能和形状记忆显着提高。动态力学分析表明,蓖麻油/ PCL基聚氨酯的储能模量随蓖麻油含量的增加而增加。在酶促降解测试中,蓖麻油/ PCL基聚氨酯的降解速度快于常规石油基聚氨酯。这项研究表明使用蓖麻油/ PCL基聚氨酯作为生物基涂料的潜力。

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