2018
DOI: 10.1002/marc.201800098
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Progress on Catalytic Systems Used in Click Polymerization

Abstract: Click polymerization, a powerful synthetic technique to construct polymers with unique structures and advanced functions, is of crucial importance in the areas of polymer and material sciences. A variety of click polymerizations such as azide-alkyne, thiol-yne, amino-yne, and hydroxyl-yne reactions have been established, wherein the catalytic systems play an indispensable role in realizing these highly practical reactions based on triple-bond building blocks, as they directly influence the efficiencies of the … Show more

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Cited by 28 publications
(18 citation statements)
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References 109 publications
(114 reference statements)
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“…[ 1 ] Multicomponent polymerization (MCP) has become a powerful tool for obtaining multifunctional advanced materials due to its excellent structural diversity, mild reaction conditions, and environmental benefits, and has thus attracted much attention. [ 2–11 ] In recent years, triple‐bond compounds, such as isonitriles [ 12–17 ] and alkynes, [ 18–24 ] have been widely used to prepare novel polymers through MCP. For instance, in 2018, Li et al.…”
Section: Introductionmentioning
confidence: 99%
“…[ 1 ] Multicomponent polymerization (MCP) has become a powerful tool for obtaining multifunctional advanced materials due to its excellent structural diversity, mild reaction conditions, and environmental benefits, and has thus attracted much attention. [ 2–11 ] In recent years, triple‐bond compounds, such as isonitriles [ 12–17 ] and alkynes, [ 18–24 ] have been widely used to prepare novel polymers through MCP. For instance, in 2018, Li et al.…”
Section: Introductionmentioning
confidence: 99%
“…To describe this variation, Tang and coworkers coined the term 'click' polymerization. [2][3][4][5] In this context, the reaction between the amine and epoxide functionalities is known to proceed under ambient and aqueous conditions to afford poly(b-hydroxyl amine)s. [6][7][8][9] The amineepoxy reaction is catalyst-free and generates no by-product. 10,11 Therefore, a post-polymerization purication protocol is not necessary and the polymers can be produced in a quantitative yield.…”
mentioning
confidence: 99%
“…Besides, immobilizing Cu(I) catalyst on a supporting substrate provides a pathway for the next generation of CuAACP. 377,378 Various heterogeneous catalysts have been developed to reduce the concentration of copper ions to 100-200 ppm level if loaded on appropriate supports, including dimethylamino-grafted cross-linked polystyrene and modified Merrifield resin. In a recent report from Tang group, magnetic nanoparticles composed with Fe 3 O 4 /SiO 2 /Cu 2 O were used and could be recycled impressively for at least 12 times.…”
Section: Azide-alkyne Cycloaddition Polymerizationmentioning
confidence: 99%