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Thermoreversible crosslinking rubber using supramolecular hydrogen bonding networks

机译:使用超分子氢键网络的热可逆交联橡胶

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Thermoreversible crosslinking rubber (TRC-IR) was easily synthesized by modification of isoprene rubber (IR) with maleic anhydride followed by the addition of 3-amino-1,2,4-triazole (ATA), in solid phase. The mechanical properties of the resulting robber were more similar to the sulfur-vulcanized rubber than general thermoplastic elastomers (ex. SEBS). Although the tensile strength and elongation at break were lower than those of a corresponding sulfur-vulcanized rubber, the moduli were as high as those of sulfur-cured rubber. Re-molding of TRC-IR could be repeated more than 10 times without significantly changing its mechanical properties. Differential scanning calorimetry (DSC) and infrared analyses revealed that the superior mechanical properties and good recyclability are attriburable to the strong hydrogen bonding. The TRC-IR showed an endothermic transition peak at around 185℃ on the DSC chart, indicating cleavage of the hydrogen bonding. Infrared analyses also revealed that the absorption peaks of carboxylic acid were shifted to a lower region by the strong hydrogen bonding. The thermoreversible crosslinking system wan also applied to EPM, EBM (ethylene-butene rubber), and IIR. These rubbers also showed superior mechanical properties as well as excellent recyclability.
机译:通过用马来酸酐改性异戊二烯橡胶(IR),然后在固相中添加3-氨基-1,2,4-三唑(ATA),可以轻松合成热可逆交联橡胶(TRC-IR)。与普通的热塑性弹性体(例如SEBS)相比,所得强盗的机械性能更类似于硫磺硫化橡胶。尽管拉伸强度和断裂伸长率低于相应的硫磺硫化橡胶,但模量与硫磺硫化橡胶一样高。 TRC-IR的重塑可以重复进行10次以上,而不会显着改变其机械性能。差示扫描量热法(DSC)和红外分析表明,优异的机械性能和良好的可回收性归因于强大的氢键作用。 TRC-IR在DSC图上显示在185℃左右的吸热跃迁峰,表明氢键断裂。红外分析还表明,羧酸的吸收峰通过强氢键转移到较低区域。热可逆交联体系也适用于EPM,EBM(乙烯-丁烯橡胶)和IIR。这些橡胶还显示出优异的机械性能以及出色的可回收性。

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