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Supramolecular adhesive materials from small‐molecule self‐assembly 被引量:8

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摘要 Developing high‐performance adhesive materials not only aims at industrial and social requirements but also bears the fundamental importance of understanding the chemical factors of biological adhesion to develop biomimetic adhesive materials.Owing to the wide development of supramolecular chemistry,numerous supramolecular tools are exploited and proved to be reliable in the replacement of traditional covalent materials by reversible noncovalent or dynamic covalent materials.Taking advantage of these readyto‐use supramolecular toolboxes,supramolecular adhesive materials are rising and promising toward“smart”adhesives,that is,enabling responsiveness,reversibility,and recyclability.Compared with polymeric adhesive materials,low‐molecular‐weight adhesives feature chemically precise structure,easier engineering by molecular design,and hence higher reproducibility.However,it remains highly challenging to make high‐performance adhesive materials by low‐molecular‐weight feedstocks.This review will focus on the recent advancement in the construction of supramolecular adhesive materials by smallmolecule self‐assembly.The design guidelines and consideration on the molecular scale will be discussed and summarized on how to enhance the strength of adhesives.Meanwhile,owing to the dynamic nature of supramolecular self‐assembly,several“smart”functions of such materials will be presented,such as stimuli–responsiveness and adaptiveness.Finally,current challenges and future perspectives of this emerging field will be proposed.
出处 《SmartMat》 2020年第1期85-103,共19页 智能材料(英文)
基金 Shanghai Municipal Science and Technology Major Project,Grant/Award Number:2018SHZDZX03 Programme of Introducing Talents of Discipline to Universities,Grant/Award Number:B16017 Shanghai Science and Technology Committee,Grant/Award Number:17520750100 National Natural Science Foundation of China,Grant/Award Numbers:21672060,21790361,21871084,22025503 Program of Shanghai Academic/Technology Research Leader,Grant/Award Number:19XD1421100。
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