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生物基半芳香族耐热共聚物聚酰胺5T-co-6T的合成与性能

Synthesis and properties of bio-based semi-aromatic heat-resistant copolymer polyamide 5T-co-6T.

作者信息

Bian Xiangcheng, Ma Liqun, Yang Chen, Zhang Fuchun, Zhang Shuo, Li Yuan, Gao Kai, Liu Bingxiao, Wang Zhongqiang

机构信息

Department of Materials Engineering, Taiyuan Institute of Technology, Taiyuan, Shanxi, China.

Research and Development Center, Cathay Biotech Inc, Shanghai, China.

出版信息

Des Monomers Polym. 2024 Aug 11;27(1):87-102. doi: 10.1080/15685551.2024.2390700. eCollection 2024.

Abstract

Herein, poly(pentanediamine terephthalamide) (PA5T) homopolymer was synthesized via a salt-forming reaction+solid state polycondensation method using bio-based 1,5-pentanediamine and terephthalic acid as the primary raw materials. To address the issue of its narrower processing window, poly(hexamethylene terephthalamide)(PA6T), which also cannot be melt processed due to the processing window is negative, was introduced into its molecular chain to synthesize poly (pentanediamine/hexanediamine terephthaloyl) (PA5T-co-6T) copolymers. The structures were investigated by Fourier transform infrared spectroscopy (FTIR) and nuclear magnetic resonance carbon spectroscopy (C-NMR). Furthermore, the melting temperature, crystallization temperature, thermal stability, and crystal growth mode of the polymer were tested and analyzed using differential scanning calorimetry (DSC), thermogravimetric analysis (TGA) and wide-angle x-ray diffraction (WAXD), respectively. The results demonstrate that the crystal growth mode gradually changes from three-dimensional spherical growth to two-dimensional disk-like or three-dimensional spherical growth with the increase of 6T chain segment content. Simultaneously, the crystallization temperature, melting temperature, and crystallization rate of the polymer all showed a trend of decreasing first and then increasing, which was due to the combined effects of the increase in the content of 6T chain segments on the molecular-chain structure and crystal structure of the polymer. Bio-based PA5T-co-6T has excellent heat resistance and a wider processing window than PA5T and PA6T, which possesses great application prospects in the fields of automotive, electronic appliances, and LED optics.

摘要

在此,以生物基1,5-戊二胺和对苯二甲酸为主要原料,通过成盐反应+固相缩聚法合成了聚(对苯二甲酰戊二胺)(PA5T)均聚物。为了解决其加工窗口较窄的问题,将同样由于加工窗口为负而无法熔融加工的聚(对苯二甲酰己二胺)(PA6T)引入其分子链中,合成了聚(戊二胺/己二胺对苯二甲酰)(PA5T-co-6T)共聚物。通过傅里叶变换红外光谱(FTIR)和核磁共振碳谱(C-NMR)对结构进行了研究。此外,分别使用差示扫描量热法(DSC)、热重分析(TGA)和广角X射线衍射(WAXD)对聚合物的熔点、结晶温度、热稳定性和晶体生长模式进行了测试和分析。结果表明,随着6T链段含量的增加,晶体生长模式逐渐从三维球晶生长转变为二维盘状或三维球晶生长。同时,聚合物的结晶温度、熔点和结晶速率均呈现先降低后升高的趋势,这是由于6T链段含量的增加对聚合物分子链结构和晶体结构的综合影响所致。生物基PA5T-co-6T具有优异的耐热性,且比PA5T和PA6T具有更宽的加工窗口,在汽车、电子电器和LED光学等领域具有广阔的应用前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/684d/11321112/06fcc8b32fc5/TDMP_A_2390700_F0001_OC.jpg

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