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包含动态共价键的双交联聚合物网络

Dually Crosslinked Polymer Networks Incorporating Dynamic Covalent Bonds.

作者信息

Hammer Larissa, Van Zee Nathan J, Nicolaÿ Renaud

机构信息

Chimie Moléculaire, Macromoléculaire, Matériaux, ESPCI Paris, CNRS, Université PSL, 10 rue Vauquelin, 75005 Paris, France.

出版信息

Polymers (Basel). 2021 Jan 27;13(3):396. doi: 10.3390/polym13030396.

Abstract

Covalent adaptable networks (CANs) are polymeric networks containing covalent crosslinks that are dynamic under specific conditions. In addition to possessing the malleability of thermoplastics and the dimensional stability of thermosets, CANs exhibit a unique combination of physical properties, including adaptability, self-healing, shape-memory, stimuli-responsiveness, and enhanced recyclability. The physical properties and the service conditions (such as temperature, pH, and humidity) of CANs are defined by the nature of their constituent dynamic covalent bonds (DCBs). In response to the increasing demand for more sophisticated and adaptable materials, the scientific community has identified dual dynamic networks (DDNs) as a promising new class of polymeric materials. By combining two (or more) distinct crosslinkers in one system, a material with tailored thermal, rheological, and mechanical properties can be designed. One remarkable ability of DDNs is their capacity to combine dimensional stability, bond dynamicity, and multi-responsiveness. This review aims to give an overview of the advances in the emerging field of DDNs with a special emphasis on their design, structure-property relationships, and applications. This review illustrates how DDNs offer many prospects that single (dynamic) networks cannot provide and highlights the challenges associated with their synthesis and characterization.

摘要

共价自适应网络(CANs)是一种聚合物网络,包含在特定条件下具有动态性的共价交联键。除了具备热塑性塑料的延展性和热固性塑料的尺寸稳定性外,CANs还展现出一系列独特的物理性能组合,包括适应性、自修复性、形状记忆性、刺激响应性以及更高的可回收性。CANs的物理性能和使用条件(如温度、pH值和湿度)由其组成的动态共价键(DCB)的性质决定。为了满足对更复杂和适应性更强材料的日益增长的需求,科学界已将双动态网络(DDN)确定为一类有前途的新型聚合物材料。通过在一个体系中结合两种(或更多)不同的交联剂,可以设计出具有定制热性能、流变性能和机械性能的材料。DDN的一个显著特性是它们能够将尺寸稳定性、键的动态性和多响应性结合起来。本综述旨在概述DDN新兴领域的进展,特别强调其设计、结构-性能关系及应用。本综述阐述了DDN如何提供许多单一(动态)网络无法提供的前景,并突出了与其合成和表征相关的挑战。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/019c/7865237/84ed36fcc72a/polymers-13-00396-g001.jpg

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