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首页> 外文期刊>Chemistry of Materials: A Publication of the American Chemistry Society >Covalently Crosslinked and Physically Stable Polymer Coatings with Chemically Labile and Dynamic Surface Features Fabricated by Treatment of Azlactone-Containing Multilayers with Alcohol-, Thiol-, and Hydrazine-Based Nucleophiles
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Covalently Crosslinked and Physically Stable Polymer Coatings with Chemically Labile and Dynamic Surface Features Fabricated by Treatment of Azlactone-Containing Multilayers with Alcohol-, Thiol-, and Hydrazine-Based Nucleophiles

机译:共价交联和物理稳定的聚合物涂层,具有化学稳定性和动态表面特征,可通过使用基于醇,硫醇和肼的亲核试剂处理含Az杂内酯的多层材料制成

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摘要

We report approaches to the design of covalently crosslinked and physically stable surface coatings with chemically labile and dynamic surface features based on the functionalization of azlactone-containing materials with alcohol-, thiol-, and hydrazine-based nucleophiles. Past studies demonstrate that residual azlactone groups in polymer multilayers fabricated by the reactive layer-by-layer assembly of poly(2-vinyl-4,4-dimethylazlactone) and branched poly(ethylenimine) can react with amine-based nucleophiles to impart new surface and bulk properties through the creation of chemically stable amide/amide-type bonds. Here, we demonstrate that the azlactone groups in these covalently crosslinked materials can also be functionalized using less nucleophilic alcohol- or thiol-containing compounds, using an organic catalyst, or converted to reactive acylhydrazine groups by direct treatment with hydrazine. These methods (i) broaden the pool of molecules that can be used for post-fabrication functionalization to include compounds containing alcohol, thiol, or aldehyde groups and (ii) yield surface coatings with chemically labile amide/ester-, amide/thioester-, and amide/imine-type bonds that make possible the design of new dynamic and stimulus-responsive materials (e.g., surfaces that release covalently bound molecules or undergo changes in extreme wetting behaviors in response to specific chemical stimuli). Our results expand the range of functionality that can be installed in, and thus the range of new functions that can be imparted to, azlactone-containing coatings beyond those that can be accessed using primary amine-based nucleophiles. The chemical approaches demonstrated here using model polymer-based reactive multilayer coatings are general and should thus also prove useful for the design of new responsive surfaces based on other types of azlactone-functionalized materials.
机译:我们报告了基于含醇,硫醇和肼基亲核试剂的含氮内酯材料的功能化,设计了具有化学不稳定和动态表面特征的共价交联和物理稳定的表面涂层的设计方法。过去的研究表明,通过聚(2-乙烯基-4,4-二甲基氮杂内酯)和支链聚(乙烯亚胺)的逐层反应性组装而制造的聚合物多层中的残留氮杂内酯基团可以与胺基亲核试剂反应以赋予新的表面通过建立化学上稳定的酰胺/酰胺型键来实现整体和本体性能。在这里,我们证明了这些共价交联材料中的z内酯基团也可以使用较少的亲核醇或含硫醇的化合物,通过有机催化剂进行官能化,或通过直接用肼处理转化为反应性酰基肼基团。这些方法(i)拓宽了可用于制造后功能化的分子库,以包括含有醇,硫醇或醛基的化合物;(ii)用化学性质不稳定的酰胺/酯-,酰胺/硫酯-形成表面涂层,酰胺/亚胺型键使新的动态和刺激响应材料的设计成为可能(例如,表面释放共价键合的分子或响应特定的化学刺激而经历极端润湿行为的变化)。我们的结果扩展了可以安装在含氮杂内酯涂料中的功能范围,从而赋予了含乙内酯涂层的新功能范围,这超出了使用伯胺基亲核试剂可获得的范围。这里展示的使用基于聚合物模型的反应性多层涂料的化学方法是通用的,因此也应证明对基于其他类型的内酯内酯官能化材料的新型响应性表面设计有用。

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