等温滴定量热法
锌
高分子化学
组氨酸
滴定法
聚合
共聚物
化学
聚合物
咪唑
单体
材料科学
有机化学
物理化学
酶
作者
Marcel Enke,Franziska Jehle,Stefan Bode,Jürgen Vitz,Matthew J. Harrington,Martin D. Hager,Ulrich S. Schubert
标识
DOI:10.1002/macp.201600458
摘要
Histidine–zinc interactions are believed to play a key role in the self‐healing behavior of mussel byssal threads due to their reversible character. Taking this as inspiration, the authors synthesize here histidine‐rich copolymers, as well as model histidine compounds and characterize them using isothermal titration calorimetry (ITC). With this approach, the influence of two different zinc(II) salts and the role in the complex formation of the amine function of the imidazole ring are investigated in detail. The extracted metal–ligand ratios are utilized to design novel self‐healing metallopolymers. For this purpose, n ‐lauryl methacrylate is copolymerized with the histidine monomer via reversible addition‐fragmentation chain transfer polymerization. The copolymers are crosslinked using different zinc salts, and the resulting coatings are characterized with Raman spectroscopy to investigate the metal coordination behavior and with scratch healing tests to investigate the self‐healing capacity. Finally, the self‐healing behavior of the different materials is correlated with the metal–ligand binding affinity measured by ITC. image
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