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Analysis of the surface density and reactivity of perfluorophenylazide and the impact on ligand immobilization

机译:全氟苯叠氮化物的表面密度和反应性及其对配体固定化的影响分析

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摘要

Perfluorophenylazide (PFPA) chemistry is a novel method for tailoring the surface properties of solid surfaces and nanoparticles. It is general and versatile, and has proven to be an efficient way to immobilize graphene, proteins, carbohydrates, and synthetic polymers. The main thrust of this work is to provide a detailed investigation on the chemical composition and surface density of the PFPA tailored surface. Specifically, gold surfaces were treated with PFPA-derivatized (11-mercaptoundecyl)tetra(ethylene glycol) (PFPA-MUTEG) mixed with 2-[2-(2-mercaptoethoxy)ethoxy]ethanol (MDEG) at varying solution mole ratios. Complementary analytical techniques were employed to characterize the resulting films including Fourier transform infrared spectroscopy to detect fingerprints of the PFPA group, x-ray photoelectron spectroscopy and ellipsometry to study the homogeneity and uniformity of the films, and near edge x-ray absorption fine structures to study the electronic and chemical structure of the PFPA groups. Results from these studies show that the films prepared from 90:10 and 80:20 PFPA-MUTEG/MDEG mixed solutions exhibited the highest surface density of PFPA and the most homogeneous coverage on the surface. A functional assay using surface plasmon resonance with carbohydrates covalently immobilized onto the PFPA-modified surfaces showed the highest binding affinity for lectin on the PFPA-MUTEG/MDEG film prepared from a 90:10 solution.
机译:全氟苯叠氮化物(PFPA)化学是一种用于调整固体表面和纳米颗粒表面特性的新颖方法。它是通用且通用的,并且已被证明是固定石墨烯,蛋白质,碳水化合物和合成聚合物的有效方法。这项工作的主要目的是对PFPA定制表面的化学成分和表面密度进行详细研究。具体地,用PFPA衍生化的(11-巯基癸基)四(乙二醇)(PFPA-MUTEG)与2- [2-(2-巯基乙氧基)乙氧基]乙醇(MDEG)混合以不同的溶液摩尔比处理金表面。采用互补分析技术对所得薄膜进行表征,包括傅立叶变换红外光谱法(用于检测PFPA组的指纹),X射线光电子能谱法和椭偏法以研究薄膜的均质性和均匀性,以及近边缘X射线吸收精细结构。研究PFPA组的电子和化学结构。这些研究的结果表明,由90:10和80:20 PFPA-MUTEG / MDEG混合溶液制备的薄膜表现出最高的PFPA表面密度和最均匀的表面覆盖率。使用表面等离振子共振与共价固定在PFPA修饰的表面上的碳水化合物进行的功能测定表明,从90:10溶液制备的PFPA-MUTEG / MDEG膜对凝集素的结合亲和力最高。

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