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Plasmon-assisted grafting of anisotropic nanoparticles - spatially selective surface modification and the creation of amphiphilic SERS nanoprobes

机译:Plasmon-assisted嫁接的各向异性纳米粒子,空间选择性表面修改和两亲性ser的创建

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摘要

Amphiphilic nanoparticles (NPs) with a spatially selective distribution of grafted functional groups have great potential in the field of sensing, advanced imaging, and therapy due to their unique surface properties. The main techniques for the spatially selective functionalization of NPs utilize the surface-assisted approaches, which significantly restrict their production throughput. In this work, we propose an alternative plasmon-based route for the spatially selective grafting of anisotropic gold nanorods (AuNRs) using iodonium and diazonium salts. Utilization of longer laser wavelengths leads to the excitation of longitudinal plasmon resonances on AuNR tips, plasmon-assisted homolysis of the C-I bond in iodonium salts and the formation of aryl radicals, which are further grafted to the tips of AuNRs. The sides of AuNRs were subsequently decorated through spontaneous diazonium surface grafting. As a result, the AuNRs with spatially separated functional groups were prepared in a versatile way, primarily in solution and without the need for a sophisticated technique of NP immobilization or surface screening. The versatility of the proposed approach was proved on three kinds of AuNRs with different architectures and wavelength positions of plasmon absorption bands. Moreover, the applicability of the prepared amphiphilic AuNRs was shown by efficient trapping and SERS sensing of amphiphilic biomolecules.
机译:两亲性纳米粒子(NPs)空间接枝功能的选择性分布组织领域的巨大潜力由于先进传感、成像和治疗他们独特的表面特性。空间选择性的技术NPs利用功能化surface-assisted方法,大大限制其生产吞吐量。工作中,我们提出一个替代plasmon-based路线的空间选择性移植各向异性的金纳米棒使用碘鎓(AuNRs)和重氮盐。波长导致的激励纵向等离子体共振AuNR窍门,plasmon-assisted均裂我的债券碘鎓盐和芳基的形成激进分子,进一步嫁接技巧AuNRs。通过自发的重氮表面装饰嫁接。官能团被准备分开没有通用的方法,主要是在解决方案需要复杂的NP技术固定或表面筛选。该方法被证明的多功能性在三种AuNRs不同体系结构和等离子体的波长位置吸收带。准备两亲性AuNRs所示高效的捕获和ser感应的两亲性生物分子。

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