Fire‐retardant and high‐strength polymeric materials enabled by supramolecular aggregates

超分子化学 超分子聚合物 聚合物 材料科学 阻燃剂 纳米技术 非共价相互作用 氢键 化学 复合材料 有机化学 分子
作者
Lei Liu,Menghe Zhu,Jiabing Feng,Hong Peng,Yongqian Shi,Jiefeng Gao,Long‐Cheng Tang,Pingan Song
出处
期刊:Aggregate [Wiley]
被引量:22
标识
DOI:10.1002/agt2.494
摘要

Abstract High‐performance polymers have proliferated in modern society across a variety of industries because of their low density, good chemical stability, and superior mechanical properties. However, while polymers are widely applied, frequent fire disasters induced by their intrinsic flammability have caused massive impacts on human beings, the economy, and the environment. Supramolecular chemistry has recently been intensively researched to provide fire retardancy for polymers via the physical barrier and char‐catalyzing effects of supramolecular aggregates. In parallel, the noncovalent interactions between supramolecular and polymer chains, such as hydrogen bonding, π–π interactions, metal–ligand coordination, and synergistic interactions, can endow the matrix with enhanced mechanical strength. This makes it possible to integrate physical–chemical properties and noncovalent interactions into one supramolecular aggregate‐based high‐performance polymeric system on demand. However, fulfilling these promises needs more research. Here, we provide an overview of the latest research advances of fire‐retardant and high‐strength polymer materials based on supramolecular structures and interactions of aggregates. This work reviews their conceptual design, characterization, modification principles, performances, applications, and mechanisms. Finally, development challenges and perspectives on future research are also discussed.
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