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Tuning gold nanoparticle-poly(2-hydroxyethyl methacrylate) brush interactions: from reversible swelling to capture and release

机译:调节金纳米颗粒与聚(甲基丙烯酸2-羟乙酯)刷的相互作用:从可逆溶胀到捕获和释放

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摘要

Tailoring the interaction between surfaces and nanoparticles (NPs) affords great opportunities for a range of applications, including sensors, information storage, medical diagnostics, and filtration membranes. In addition to controlling local ordering and microscale patterning of the NPs, manipulating the temporal factors determining the strength of the interaction between NP and surface enables dynamic modulation of these structural characteristics. In this contribution we demonstrate robust polymer brush-NP hybrids that exhibit both reversible swelling and reversible NP adsorption/desorption. Polymer brush functionality is tailored through post-functionalization of poly(2-hydroxyethyl methacrylate) (PHEMA) brushes on flat solid substrates with alpha-amine conjugates ranging from perfluoro alkanes to poly(ethylene glycol) of varying molecular weights. The type of functionality controls NP affinity for the surfaces. In the case of poly(ethylene glycol) (PEG), the molecular weight (MW) of the PEG dictates adsorption and desorption phenomena. Higher MW PEG chains possess increased binding affinity toward NPs, which leads to higher relative Au-NP densities on the PHEMA-g-PEG brushes and concurrent sluggish desorption of NPs by thermal stimulus. Adsorption and desorption phenomena are further modulated by NP size yielding a system where adsorption and desorption are controlled by a delicate balance between the competitive energetics of polymer brush chelation versus solvation.
机译:调整表面与纳米粒子(NP)之间的相互作用为一系列应用程序提供了巨大的机会,包括传感器,信息存储,医学诊断和滤膜。除了控制NP的局部有序和微尺度图案化之外,操纵确定NP与表面之间相互作用强度的时间因素还可以动态调节这些结构特征。在这一贡献中,我们展示了具有可逆溶胀和可逆NP吸附/解吸的强大聚合物刷-NP杂化物。聚合物刷的功能性是通过在扁平固体基材上使用范围从全氟烷烃到分子量不同的聚乙二醇的α-胺共轭物对聚(甲基丙烯酸2-羟乙酯)(PHEMA)刷进行后官能化来定制的。功能的类型控制表面的NP亲和力。在聚乙二醇(PEG)的情况下,PEG的分子量(MW)决定了吸附和解吸现象。较高的MW PEG链对NP的结合亲和力增加,这导致PHEMA-g-PEG刷上的相对Au-NP相对密度更高,同时由于热刺激而使NP缓慢解吸。 NP尺寸进一步调节了吸附和解吸现象,从而形成了一种系统,其中聚合物刷螯合的竞争性能量与溶剂化之间的微妙平衡控制了吸附和解吸。

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