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一种生物基耐热尼龙5T/10T的合成、表征及结晶动力学

Synthesis, characterization and crystallization kinetics of a bio-based, heat-resistance nylon 5T/10T.

作者信息

Liu Bingxiao, Zhang Shuo, Ma Liqun, Wu Yu, Li Chao, Wu Zhuo, Bian Xiangcheng, Yan Wen

机构信息

Taiyuan Institute of Technology, Department of Materials Engineering Taiyuan 030008 China

Public Service Platform for Science and Technology, Shenzhen Institutes of Advanced Technology, Chinese Academy of Sciences, Shenzhen University Town 1068 Xueyuan Avenue Shenzhen 518055 PR China.

出版信息

RSC Adv. 2023 Jun 13;13(26):17874-17882. doi: 10.1039/d3ra02337k. eCollection 2023 Jun 9.

Abstract

The rapid consumption of fossil resources and its adverse impact on the environment require the use of bio-based materials to replace petrochemical products. In this study, we present a bio-based, heat-resistant engineering plastic, poly(pentamethylene terephthalamide) (nylon 5T). To address the issues of the narrow processing window and difficulty in melting processing of nylon 5T, we introduced more flexible decamethylene terephthalamide (10T) units to create a copolymer, nylon 5T/10T. The chemical structure was confirmed by Fourier transform infrared spectroscopy (FTIR) and nuclear magnetic resonance (C-NMR). We investigated the influence of 10T units on the thermal performance, crystallization kinetics, crystallization activation energy, and crystal structures of the copolymers. Our results demonstrate that the crystal growth mode of nylon 5T is a two-dimensional discoid growth pattern, while nylon 5T/10T exhibits a two-dimensional discoid or three-dimensional spherical growth pattern. The melting temperature, crystallization temperature, and crystallization rate first decrease and then increase, and crystal activation energy first increases and then decreases as a function of 10T units. These effects are attributed to the combined impact of molecular chain structure and polymer crystalline region. Bio-based nylon 5T/10T shows excellent heat resistance (melting temperature > 280 °C) and a wider processing window than nylon 5T and 10T, which is a promising heat-resistant engineering plastic.

摘要

化石资源的快速消耗及其对环境的不利影响要求使用生物基材料来替代石化产品。在本研究中,我们展示了一种生物基耐热工程塑料聚(对苯二甲酰戊二胺)(尼龙5T)。为了解决尼龙5T加工窗口窄和熔融加工困难的问题,我们引入了更具柔性的对苯二甲酰癸二胺(10T)单元来制备共聚物尼龙5T/10T。通过傅里叶变换红外光谱(FTIR)和核磁共振(C-NMR)确定了化学结构。我们研究了10T单元对共聚物热性能、结晶动力学、结晶活化能和晶体结构的影响。我们的结果表明,尼龙5T的晶体生长模式为二维盘状生长模式,而尼龙5T/10T表现出二维盘状或三维球状生长模式。随着10T单元含量的增加,熔点、结晶温度和结晶速率先降低后升高,而结晶活化能先升高后降低。这些影响归因于分子链结构和聚合物结晶区域的综合作用。生物基尼龙5T/10T具有优异的耐热性(熔点>280°C),且加工窗口比尼龙5T和10T更宽,是一种很有前景的耐热工程塑料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0e25/10262983/89b979200d49/d3ra02337k-f1.jpg

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