Hong Younggi, Goh Munju
Department of Chemical Engineering, Konkuk University, 120 Neungdong-ro, Gwangjin-gu, Seoul 05029, Republic of Korea.
Polymers (Basel). 2024 Jan 29;16(3):365. doi: 10.3390/polym16030365.
Vitrimers, as dynamic covalent network polymers, represent a groundbreaking advancement in materials science. They excel in their applications, such as advanced thermal-conductivity composite materials, providing a sustainable alternative to traditional polymers. The incorporation of vitrimers into composite fillers enhances alignment and heat passway broadly, resulting in superior thermal conductivity compared to conventional thermosetting polymers. Their dynamic exchange reactions enable straightforward reprocessing, fostering the easy reuse of damaged composite materials and opening possibilities for recycling both matrix and filler components. We review an overview of the present advancements in utilizing vitrimers for highly thermally conductive composite materials.
作为动态共价网络聚合物,热致液晶聚合物代表了材料科学领域的一项突破性进展。它们在诸如先进导热复合材料等应用中表现出色,为传统聚合物提供了一种可持续的替代方案。将热致液晶聚合物掺入复合填料中可广泛增强排列和热传导通道,从而产生比传统热固性聚合物更高的热导率。它们的动态交换反应使直接再加工成为可能,促进了受损复合材料的轻松再利用,并为基体和填料组分的回收开辟了可能性。我们综述了利用热致液晶聚合物制备高导热复合材料的当前进展概况。