动态共价化学
共价键
石油化工
纳米技术
绿色化学
化学
生化工程
聚合物
单体
计算机科学
组合化学
材料科学
有机化学
工程类
分子
超分子化学
作者
Justin Jian Qiang Mah,Nayli Erdeanna Binte Surat’man,Bofan Li,Sheng Wang,Zibiao Li
标识
DOI:10.1002/cssc.202500480
摘要
Dynamic covalent chemistry (DCC) has emerged as an important framework for designing sustainable polymeric materials, offering an accessible route to recyclability, self‐healing, and environmental compatibility. By integrating dynamic covalent bonds (DCBs) such as imine, disulfide, Diels‐Alder linkages and more, DCC‐based networks enable efficient reprocessing, extend material lifespan, and facilitate closed‐loop recycling. Recent advances have demonstrated improved mechanical strength retention, enhanced healing efficiency, and the incorporation of bio‐derived monomers to reduce reliance on petrochemical feedstocks. These developments align not only with the traditional twelve principles of green chemistry but also with their updated 2020 interpretation, which emphasizes circularity, systems thinking, and lifecycle analysis. As DCC matures, optimizing bond exchange kinetics, network architectures, and integration of renewable resources will be key to enabling scalable, high‐performance, and circular polymer technologies.
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