Bio-based long-chain aliphatic polyamide with intrinsic flame retardancy and great overall properties

IF 7.4 2区 化学 Q1 POLYMER SCIENCE
Ya-Ling Tang, Guan-Qi Zheng, Yu-Xin Lin, Peng Lu, Hai-Bo Zhao, De-Ming Guo, Li Chen, Bo-Wen Liu, Yu-Zhong Wang
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引用次数: 1

Abstract

Bio-based long-chain aliphatic polyamides show remarkable potential in pursuing high-performance, sustainable bio-plastics. However, the aliphatic structure also leads to high flammability that severely restricts their applications. Herein, we demonstrate a novel flame-retardant system to fabricate high-performance, flame-retardant bio-based long-chain aliphatic polyamide. In this system, a novel reactive nitrogen-based flame-retardant monomer, PDB, was designed and synthesized. Subsequently, the corresponding bio-based long-chain polyamide copolymer was prepared through a facile polycondensation process. The nitrogen-based groups exhibited highly efficient free-radical-capturing effect, helping the copolymer achieve a high limiting oxygen index value of 32.6%, the UL-94 V-0 rating, a 33.3% lower peak heat release rate, and inhibited the release of toxic gasses at a PDB content of 6 wt%. Furthermore, the copolymer exhibited largely maintained crystallinity, thermal stability, and mechanical properties, owing to the high reactivity of PBD with polyamide monomers. At the same time, the incorporation of PBD increased the rigidity of the copolymer, resulting in a significant increase of 16.4 °C in the glass transition temperature and lower dielectric properties. This work provides a new perspective on the preparation of bio-based long-chain aliphatic polyamide with enhanced overall properties.

生物基长链脂肪聚酰胺,具有内在阻燃性和优良的综合性能
生物基长链脂肪聚酰胺在追求高性能、可持续的生物塑料方面显示出巨大的潜力。然而,脂肪族结构也导致高可燃性,严重限制了它们的应用。在此,我们展示了一种新型阻燃体系来制备高性能,阻燃的生物基长链脂肪族聚酰胺。在该体系中,设计并合成了一种新型活性氮基阻燃单体PDB。随后,通过简单的缩聚工艺制备了相应的生物基长链聚酰胺共聚物。氮基基团表现出高效的自由基捕获效果,使共聚物的极限氧指数达到32.6%,UL-94 V-0额定值,峰值放热率降低33.3%,并在PDB含量为6 wt%时抑制有毒气体的释放。此外,由于PBD与聚酰胺单体的高反应性,共聚物在很大程度上保持了结晶度、热稳定性和机械性能。同时,PBD的加入提高了共聚物的刚性,导致玻璃化转变温度显著提高16.4℃,介电性能降低。本研究为制备综合性能增强的生物基长链脂肪族聚酰胺提供了新的思路。
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来源期刊
Polymer Degradation and Stability
Polymer Degradation and Stability 化学-高分子科学
CiteScore
10.10
自引率
10.20%
发文量
325
审稿时长
23 days
期刊介绍: Polymer Degradation and Stability deals with the degradation reactions and their control which are a major preoccupation of practitioners of the many and diverse aspects of modern polymer technology. Deteriorative reactions occur during processing, when polymers are subjected to heat, oxygen and mechanical stress, and during the useful life of the materials when oxygen and sunlight are the most important degradative agencies. In more specialised applications, degradation may be induced by high energy radiation, ozone, atmospheric pollutants, mechanical stress, biological action, hydrolysis and many other influences. The mechanisms of these reactions and stabilisation processes must be understood if the technology and application of polymers are to continue to advance. The reporting of investigations of this kind is therefore a major function of this journal. However there are also new developments in polymer technology in which degradation processes find positive applications. For example, photodegradable plastics are now available, the recycling of polymeric products will become increasingly important, degradation and combustion studies are involved in the definition of the fire hazards which are associated with polymeric materials and the microelectronics industry is vitally dependent upon polymer degradation in the manufacture of its circuitry. Polymer properties may also be improved by processes like curing and grafting, the chemistry of which can be closely related to that which causes physical deterioration in other circumstances.
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