聚合物
胶粘剂
材料科学
粘附
高分子科学
单体
共聚物
苯乙烯
粘接
环氧树脂
表征(材料科学)
抗剪强度(土壤)
高分子化学
化学工程
复合材料
纳米技术
环境科学
图层(电子)
土壤科学
工程类
土壤水分
作者
Heather J. Meredith,Courtney L. Jenkins,Jonathan J. Wilker
标识
DOI:10.1002/adfm.201303536
摘要
Marine mussels clinging to rocks inspire the development of novel materials. Characterization of mussel adhesive plaques describes a matrix of proteins containing 3,4‐dihydroxyphenylalanine (DOPA), which provides cross‐linking chemistry that allows mussels to attach firmly. Several synthetic polymer systems have been developed based on this DOPA chemistry. High strength bonding has been achieved with poly[(3,4‐dihydroxystyrene)‐ co ‐styrene], a simplified mimic of mussel proteins in which 3,4‐dihydroxystyrene provides the cross‐linking and adhesion of DOPA. The poly(styrene) host polymer stands in for a protein backbone. Prior efforts showed that a monomer ratio of 1:2 3,4‐dihydroxystyrene:styrene within the statistical copolymer poly[(3,4‐dihydroxystyrene)‐ co ‐styrene] yields the highest adhesion. To enhance adhesive performance of this biomimetic polymer, a systematic study is carried out in which a range of cross‐linking agents, cure times, cure temperatures, polymer concentrations, and fillers are examined. Lap shear adhesion testing revealed substantial increases in bond strength from each study. Consensus conditions are then determined and bonding performance is assessed on several substrates. Adhesion of this system turns out to be one of the strongest of all biomimetic polymers. These studies show that DOPA chemistry may be able to stand alongside of cyanoacrylate (e.g., Super Glue) and epoxy when it comes to high strength bonding.
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