Shui Linyi, Guo Xianxin, Li Jinrong, Li Zimeng, Zhao Qinghua, Chen Guohua, Zhao Xiaomin
College of Materials Science and Engineering, Huaqiao University, Xiamen 361021, China.
Polymers (Basel). 2025 Jan 24;17(3):318. doi: 10.3390/polym17030318.
Long-chain hyperbranched polyesters (LHBPx, x = 1, 2, 3) with varying lengths of branched chains were synthesized through a thiol-ene click reaction. Subsequently, LHBPx was incorporated into PA4 via the solution method to prepare a LHBPx/PA4 polymer blend, aiming to address the limitations of PA4, such as its narrow thermal processing window (△T = T-T) and high brittleness. The results demonstrated that the addition of LHBPx enhanced the △T of PA4 from 1.6 °C to 14.5 °C (LHBP/PA4), increasing the rheological properties of LHBPx/PA4 polymer blends, thereby improving its thermal processability. Compared with PA4, the elongation at the break of the LHBP/PA4 polymer blend was increased by 20.4%, and the brittle fracture was changed into a ductile fracture. The crystallinity of PA4 was greatly decreased, from 54.41% to 37.42%, owing to the incorporation of LHBPx, whereas T of PA4 had almost no change. It was explained that LHBPx hindered the crystal growth stage, whereas it promoted the nucleation stage of PA4, resulting in no significant change in crystal type. Moreover, the longer the branched chain of LHBPx was, the more pronounced the improvement in the thermal processability and toughness of PA4 became. Above all, this work was meaningful for the potential application of PA4 in industrial plastics.
通过硫醇-烯点击反应合成了具有不同支链长度的长链超支化聚酯(LHBPx,x = 1、2、3)。随后,通过溶液法将LHBPx引入PA4中,以制备LHBPx/PA4聚合物共混物,旨在解决PA4的局限性,如热加工窗口窄(△T = T-T)和高脆性。结果表明,添加LHBPx使PA4的△T从1.6℃提高到14.5℃(LHBP/PA4),提高了LHBPx/PA4聚合物共混物的流变性能,从而改善了其热加工性能。与PA4相比,LHBP/PA4聚合物共混物的断裂伸长率提高了20.4%,脆性断裂转变为韧性断裂。由于引入了LHBPx,PA4的结晶度从54.41%大幅降至37.42%,而PA4的T几乎没有变化。据解释,LHBPx阻碍了PA4的晶体生长阶段,而促进了其成核阶段,导致晶体类型没有显著变化。此外,LHBPx的支链越长,对PA4热加工性能和韧性的改善就越明显。最重要的是,这项工作对PA4在工业塑料中的潜在应用具有重要意义。