首页> 外文期刊>ACS Omega >Functionalization of Metal Surface via Thiol–Ene Click Chemistry: Synthesis, Adsorption Behavior, and Postfunctionalization of a Catechol- and Allyl-Containing Copolymer
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Functionalization of Metal Surface via Thiol–Ene Click Chemistry: Synthesis, Adsorption Behavior, and Postfunctionalization of a Catechol- and Allyl-Containing Copolymer

机译:通过硫醇-烯点击化学对金属表面进行功能化:邻苯二酚和烯丙基共聚物的合成,吸附行为和后功能化

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Surface functionalization tailors the interfacial properties without impacts on the mechanical strength, which is beneficial for industry and daily applications of various metallic materials. Herein, a two-step surface functionalization strategy, (1) catechol-mediated immobilization of clickable agent and (2) postfunctionalization based on thiol–ene click reaction, is achieved using a copolymer, namely poly[2-(methacryloyloxy)ethylundec-10-enoate]-co -(N -(3,4-dihydroxyphenethyl) methacrylamide) [P(MEUE-co -DPMAm)]. To reduce the potential side reactions of allylic double bonds in allyl methacrylate during the polymerization, the MEUE are designed and synthesized with better control over the polymer chain growth. The surface functionalization via the two-step method is demonstrated using various thiols, e.g., hydrophobic, hydrophilic, and polymeric thiols under room conditions. Additionally, the hydrophobic-thiol-functionalized anodic aluminum oxide is found to be a candidate for the oil/water separation with a separation efficiency of ~99.2%. This surface modifier provides practical insights into the further design of functional materials.
机译:表面功能化可在不影响机械强度的情况下调整界面特性,这对各种金属材料的工业和日常应用都是有益的。在此,使用共聚物,即聚[2-(甲基丙烯酰氧基)乙基十一烷基-10]实现了两步表面官能化策略:(1)邻苯二酚介导的可点击剂固定化和(2)基于硫醇-烯点击反应的后功能化-烯酸酯] -co-(N-(3,4-二羟基苯乙基)甲基丙烯酰胺)[P(MEUE-co-DPMAm)]。为了减少聚合过程中甲基丙烯酸烯丙酯中烯丙基双键的潜在副反应,设计并合成了MEUE,可以更好地控制聚合物链的生长。在室温下,使用各种硫醇,例如疏水,亲水和聚合的硫醇,证明了通过两步法的表面官能化。另外,疏水硫醇官能化的阳极氧化铝被发现是油/水分离的候选物,分离效率约为99.2%。这种表面改性剂为功能材料的进一步设计提供了实用的见识。

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