Alginate/Polymer-Based Materials for Fire Retardancy: Synthesis, Structure, Properties, and Applications

IF 11.1 2区 化学 Q1 POLYMER SCIENCE
I. Kabir, C. Sorrell, Sajjad S. Mofarah, Wei Yang, A. Yuen, M. Nazir, G. Yeoh
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引用次数: 28

Abstract

Abstract Increasing demands in minimization of fire risks and meeting fire safety requirements by polymers require advances in knowledge of flame-retardant materials suitable for use in fire-retardancy applications. The present work represents the seminal review of alginate/polymer-based materials as flame retardants. Alginates are suitable for this application as they represent alternatives to petroleum-based polymer feedstocks. The content of the present work is structured into four sections: synthesis and structure, including alginate synthesis and modification by polymeric conjugation; properties, including four-stage mechanism of thermal degradation; applications, including commercial information on alginates and polymers; and flame retardancy, including comprehensive summaries of test methods and published data, discussion of key parameters, eight fire retardancy mechanisms, four char generation mechanisms, and extensive quantitative analysis of polymer char formation. The final section culminates in a first-principles approach to the prediction of quantitative polymer char formation. The goal of the review is to provide guidance for the application of alginates and alginates conjugated with fire-retardant polymers as a new generation flame retardant material.
海藻酸盐/聚合物基阻燃材料:合成、结构、性能和应用
摘要:聚合物对火灾风险最小化和满足消防安全要求的要求越来越高,这就要求在阻燃应用中使用阻燃材料的知识方面取得进展。本文对海藻酸盐/聚合物基阻燃材料的研究进展进行了综述。海藻酸盐适合于这种应用,因为它们代表了石油基聚合物原料的替代品。本工作的内容分为四个部分:合成和结构,包括海藻酸盐的合成和聚合物偶联修饰;性能,包括四阶段热降解机制;应用,包括海藻酸盐和聚合物的商业信息;阻燃,包括测试方法和公开数据的综合总结,关键参数的讨论,八种阻燃机理,四种炭的产生机理,以及聚合物炭形成的广泛定量分析。最后一节在预测定量聚合物炭形成的第一性原理方法中达到高潮。综述的目的是为海藻酸盐和海藻酸盐与阻燃聚合物偶联作为新一代阻燃材料的应用提供指导。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Polymer Reviews
Polymer Reviews 工程技术-高分子科学
CiteScore
24.80
自引率
0.80%
发文量
21
审稿时长
6 months
期刊介绍: Polymer Reviews is a reputable publication that focuses on timely issues within the field of macromolecular science and engineering. The journal features high-quality reviews that have been specifically curated by experts in the field. Topics of particular importance include biomedical applications, organic electronics and photonics, nanostructures, micro- and nano-fabrication, biological molecules (such as DNA, proteins, and carbohydrates), polymers for renewable energy and environmental applications, and interdisciplinary intersections involving polymers. The articles in Polymer Reviews fall into two main categories. Some articles offer comprehensive and expansive overviews of a particular subject, while others zero in on the author's own research and situate it within the broader scientific landscape. In both types of articles, the aim is to provide readers with valuable insights and advancements in the field of macromolecular science and engineering.
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