Yi Pengcheng, Chen Jingrong, Chang Junyao, Wang Junbo, Lei Ying, Jing Ruobing, Liu Xingjiang, Sun Ailing, Wei Liuhe, Li Yuhan
Zhengzhou Key Laboratory of Elastic Sealing Materials, College of Chemistry and Green Catalysis Center, Zhengzhou University, Zhengzhou 450001, China.
Polymers (Basel). 2022 Apr 20;14(9):1673. doi: 10.3390/polym14091673.
Commercial diol chain extenders generally could only form two urethane bonds, while abundant hydrogen bonds were required to construct self-healing thermoplastic polyurethane elastomers (TPU). Herein, two diol chain extenders bis(2-hydroxyethyl) (1,3-pheny-lene-bis-(methylene)) dicarbamate (BDM) and bis(2-hydroxyethyl) (methylenebis(cyclohexane-4,1-diy-l)) dicarbamate (BDH), containing two carbamate groups were successfully synthesized through the ring-opening reaction of ethylene carbonate (EC) with 1,3-benzenedimetha-namine (MX-DA) and 4, 4'-diaminodicyclohexylmethane (HMDA). The two chain extenders were applied to successfully achieve both high strength and high self-healing ability. The BDM-1.7 and BDH-1.7 elastomers had high comprehensive self-healing efficiency (100%, 95%) after heated treatment at 60 °C, and exhibited exceptional comprehensive mechanical performances in tensile strength (20.6 ± 1.3 MPa, 37.1 ± 1.7 MPa), toughness (83.5 ± 2.0 MJ/m, 118.8 ± 5.1 MJ/m), puncture resistance (196.0 mJ, 626.0 mJ), and adhesion (4.6 MPa, 4.8 MPa). The peculiar mechanical and self-healing properties of TPUs originated from the coexisting short and long hard segments, strain-induced crystallization (SIC). The two elastomers with excellent properties could be applied to engineering-grade fields such as commercial sealants, adhesives, and so on.
商业二醇扩链剂通常只能形成两个聚氨酯键,而构建自修复热塑性聚氨酯弹性体(TPU)需要大量的氢键。在此,通过碳酸亚乙酯(EC)与1,3-苯二甲胺(MX-DA)和4,4'-二氨基二环己基甲烷(HMDA)的开环反应,成功合成了两种含有两个氨基甲酸酯基团的二醇扩链剂双(2-羟乙基)(1,3-亚苯基-双-(亚甲基))二氨基甲酸酯(BDM)和双(2-羟乙基)(亚甲基双(环己烷-4,1-二亚基))二氨基甲酸酯(BDH)。将这两种扩链剂应用于TPU,成功实现了高强度和高自修复能力。BDM-1.7和BDH-1.7弹性体在60℃热处理后具有较高的综合自修复效率(分别为100%、95%),并在拉伸强度(20.6±1.3MPa、37.1±1.7MPa)、韧性(83.5±2.0MJ/m、118.8±5.1MJ/m)、抗穿刺性(196.0mJ、626.0mJ)和粘附力(4.6MPa、4.8MPa)方面表现出优异的综合力学性能。TPU独特的力学和自修复性能源于共存的短硬段和长硬段以及应变诱导结晶(SIC)。这两种具有优异性能弹性体可应用于商业密封剂、粘合剂等工程级领域。