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Self-healing Polyurethane Elastomer Based on Molecular Design:Combination of Reversible Hydrogen Bonds and High Segment Mobility

机译:基于分子设计的自愈性聚氨酯弹性体:可逆氢键和高段移动性的组合

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Polyurethane (PU) belongs to a class of special polymeric materials with hydrogen bonds, which has the potential for self-healing ability. In the present work, by introducing polypropylene glycol (PPG) blocks with high segment mobility and different block lengths on the ends of PU chains, the PUs with adjustable self-healing ability were successfully obtained. The self-healing ability of the PUs firstly increases with the increase of the PPG block lengths, but then decreases. This phenomenon can be attributed to the combined effects of the density of hydrogen bonds and the mobility of PPG segments. At first, the increase of the PPG block length leads to the improvement of mobility of PU chains, which is beneficial for the enhancement of the self-healing. However, the further increase of the PPG block length results in the reduction in the hydrogen bond density, finally leading to the decrease of the self-healing ability of the PUs.
机译:聚氨酯(PU)属于一类具有氢键的特殊聚合物材料,具有自我愈合能力的可能性。在本作工作中,通过在PU链的末端引入具有高分迁移率和不同嵌段长度的聚丙二醇(PPG)块,成功地获得了具有可调节的自愈能力的PU。脓液的自我愈合能力首先随着PPG块长度的增加而增加,但随后降低。这种现象可归因于氢键密度和PPG段的迁移率的组合效应。首先,PPG块长度的增加导致PU链的迁移率的改善,这有利于增强自我愈合。然而,PPG块长度的进一步增加导致氢键密度的降低,最终导致脓液的自愈合能力的降低。

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