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Stereoselective and chiroselective surface plasmon resonance (SPR) analysis of amino acids by molecularly imprinted Au-Nanoparticle composites

机译:分子印迹金纳米颗粒复合材料对氨基酸的立体选择性和手性选择性表面等离子体共振(SPR)分析

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摘要

Au nanoparticles (NPs) functionalized with thioaniline and cysteine are used to assemble bis-anilinebridged Au-NP composites on Au surfaces using an electropolymerization process. During the polymerization of the functionalized Au NPs in the presence of different amino acids, for example, L-glutamic acid, L-aspartic acid, L-histidine, and L-phenylalanine, zwitterionic interactions between the amino acids and the cysteine units linked to the particles lead to the for-mation of molecularly imprinted sites in the electropolymerized Au-NP composites. Following the elimination of the template amino acid molecules, the electropolymerized matrices reveal selective recognition and binding capabilities toward the imprinted amino acid. Furthermore, by imprinting of L-glutamic or D-glutamic acids, chiroselective imprinted sites are generated in the Au-NP composites. The binding of amino acids to the imprinted recognition sites was followed by surface plasmon resonance spectroscopy. The refractive index changes occurring upon the binding of the amino acids to the imprinted sites are amplified by the coupling between the localized plasmon associated with the Au NPs and the surface plasmon wave.
机译:用硫代苯胺和半胱氨酸官能化的金纳米颗粒(NP)用于通过电聚合工艺在金表面上组装双苯胺桥联的金纳米颗粒复合材料。在存在不同氨基酸(例如L-谷氨酸,L-天冬氨酸,L-组氨酸和L-苯丙氨酸)的官能化Au NP聚合过程中,氨基酸和与颗粒导致电聚合Au-NP复合材料中分子印迹位点的形成。消除模板氨基酸分子后,电聚合基质显示出对印迹氨基酸的选择性识别和结合能力。此外,通过L-谷氨酸或D-谷氨酸的印迹,在Au-NP复合物中产生手性选择性的印迹位点。氨基酸与印迹识别位点的结合随后是表面等离子体共振光谱法。氨基酸结合到印迹位点时发生的折射率变化通过与Au NPs相关的局部等离激元与表面等离激元波之间的耦合而放大。

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