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来自可再生α-不饱和γ-丁内酯的功能聚合物和高分子材料。

Functional Polymers and Polymeric Materials From Renewable Alpha-Unsaturated Gamma-Butyrolactones.

作者信息

Kollár Jozef, Danko Martin, Pippig Falko, Mosnáček Jaroslav

机构信息

Department of Synthesis and Characterization of Polymers, Polymer Institute, Slovak Academy of Sciences, Bratislava, Slovakia.

Centre for Advanced Materials Application, Slovak Academy of Sciences, Bratislava, Slovakia.

出版信息

Front Chem. 2019 Dec 13;7:845. doi: 10.3389/fchem.2019.00845. eCollection 2019.

Abstract

Sustainable chemistry requires application of green processes and often starting materials originate from renewable resources. Biomass-derived monomers based on five-membered γ-butyrolactone ring represent suitable candidates to replace sources of fossil origin. α-Methylene-γ-butyrolactone, β-hydroxy-α-methylene-γ-butyrolactone, and β- and γ-methyl-α-methylene-γ-butyrolactones bearing exocyclic double bond are available directly by isolation from plants or derived from itaconic or levulinic acids available from biomass feedstock. Exocyclic double bond with structural similarity with methacrylates is highly reactive in chain-growth polymerization. Reaction involves the linking of monomer molecules through vinyl double bonds in the presence of initiators typical for radical, anionic, zwitterionic, group-transfer, organocatalytic, and coordination polymerizations. The formed polymers containing pendant ring are characterized by high glass transition temperature ( > 195°C) and render decent heat, weathering, scratch, and solvent resistance. The monomers can also be hydrolyzed to open the lactone ring and form water-soluble monomers. Subsequent radical copolymerization in the presence of cross-linker can yield to hydrogels with superior degree of swelling and highly tunable characteristics, depending on the external stimuli. The five-membered lactone ring allows copolymerization of these compounds by ring opening polymerization to provide polyesters with preserved methylene functionality. In addition, both the lactone ring and the methylene double bond can be attacked by amines. Polyaddition with di- or multi-amines leads to functional poly(amidoamines) with properties tunable by structure of the amines. In this mini-review, we summarize the synthetic procedures for preparation of polymeric materials with interesting properties, including thermoplastic elastomers, acrylic latexes, stimuli-sensitive superabsorbent hydrogels, functional biocompatible polyesters, and poly(amidoamines).

摘要

可持续化学需要应用绿色工艺,且起始原料通常源自可再生资源。基于五元γ-丁内酯环的生物质衍生单体是替代化石来源的合适候选物。带有环外双键的α-亚甲基-γ-丁内酯、β-羟基-α-亚甲基-γ-丁内酯以及β-和γ-甲基-α-亚甲基-γ-丁内酯可直接从植物中分离得到,或由生物质原料中可得的衣康酸或乙酰丙酸衍生而来。与甲基丙烯酸酯结构相似的环外双键在链式增长聚合反应中具有高反应活性。该反应涉及在自由基、阴离子、两性离子、基团转移、有机催化和配位聚合典型引发剂存在下,单体分子通过乙烯基双键进行连接。所形成的含侧环聚合物的特征在于高玻璃化转变温度(>195°C),并具有良好的耐热性、耐候性、耐刮性和耐溶剂性。这些单体也可水解以打开内酯环并形成水溶性单体。随后在交联剂存在下进行自由基共聚可得到具有优异溶胀度和高度可调特性的水凝胶,这取决于外部刺激。五元内酯环允许这些化合物通过开环聚合进行共聚,以提供具有保留亚甲基官能团的聚酯。此外,内酯环和亚甲基双键均可被胺进攻。与二胺或多胺进行聚加成反应可得到性能可通过胺的结构进行调节的功能性聚(酰胺胺)。在本综述中,我们总结了制备具有有趣性能的聚合物材料的合成方法,包括热塑性弹性体、丙烯酸乳胶、刺激敏感型高吸水性水凝胶、功能性生物相容性聚酯和聚(酰胺胺)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0857/6923188/e7ed626b8ee7/fchem-07-00845-g0001.jpg

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