Jiang Jie, Tang Qiuyu, Pan Xun, Li Jinjin, Zhao Ling, Xi Zhenhao, Yuan Weikang
State Key Laboratory of Chemical Engineering, School of Chemical Engineering, East China University of Science and Technology, Shanghai 200237, China.
Flinders Institute for Nanoscale Science and Technology, Flinders University, Sturt Road, Bedford Park, SA 5042, Australia.
Polymers (Basel). 2021 Aug 9;13(16):2645. doi: 10.3390/polym13162645.
Novel thermoplastic polyamide elastomers (TPAEs) consisting of long-chain semicrystalline polyamide 1212 (PA1212) and amorphous polyetheramine were synthesized via one-pot melt polycondensation. The method provides accessible routes to prepare TPAEs with a high tolerance of compatibility between polyamide and polyether oligomers compared with the traditional two-step method. These TPAEs with 10 wt % to 76 wt % of soft content were obtained by reaction of dodecanedioic acid, 1,12-dodecanediamine, and poly(propylene glycol) (PPG) diamine. The structure-property relationships of TPAEs were systematically studied. The chemical structure and the morphologic analyses have revealed that microphase separation occurs in the amorphous region. The TPAEs that have long-chain PPG segments consist of a crystalline polyamide domain, amorphous polyamide-rich domain, and amorphous polyetheramine-rich domain, while the ones containing short-chain PPG segments comprise of a crystalline polyamide domain and miscible amorphous polyamide phase and amorphous polyetheramine phase due to the compatibility between short-chain polyetheramine and amorphous polyamide. These novel TPAEs show good damping performance at low temperature, especially the TPAEs that incorporated 76 wt % and 62 wt % of PPG diamine. The TPAEs exhibit high elastic properties and low residual strain at room temperature. They are lightweight with density between 1.01 and 1.03 g/cm. The long-chain TPAEs have well-balanced properties of low density, high elastic return, and high shock-absorbing ability. This work provides a route to expand TPAEs to damping materials with special application for sports equipment used in extremely cold conditions such as ski boots.
通过一锅法熔融缩聚合成了由长链半结晶聚酰胺1212(PA1212)和无定形聚醚胺组成的新型热塑性聚酰胺弹性体(TPAE)。与传统的两步法相比,该方法为制备聚酰胺和聚醚低聚物之间具有高相容性耐受性的TPAE提供了可行的途径。通过十二烷二酸、1,12-十二烷二胺和聚丙二醇(PPG)二胺的反应,得到了软质含量为10 wt%至76 wt%的这些TPAE。系统研究了TPAE的结构-性能关系。化学结构和形态分析表明,在无定形区域发生了微相分离。具有长链PPG链段的TPAE由结晶聚酰胺域、富含无定形聚酰胺的域和富含无定形聚醚胺的域组成,而含有短链PPG链段的TPAE由于短链聚醚胺与无定形聚酰胺之间的相容性,由结晶聚酰胺域、可混溶的无定形聚酰胺相和无定形聚醚胺相组成。这些新型TPAE在低温下表现出良好的阻尼性能,特别是掺入76 wt%和62 wt% PPG二胺的TPAE。TPAE在室温下表现出高弹性性能和低残余应变。它们重量轻,密度在1.01至1.03 g/cm之间。长链TPAE具有低密度、高弹性回复率和高减震能力的良好平衡性能。这项工作提供了一条将TPAE扩展到阻尼材料的途径,用于极端寒冷条件下使用的运动器材,如滑雪靴等特殊应用。