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等离子体纳米结构功能化在光学传感中的最新进展。

Recent advances in functionalization of plasmonic nanostructures for optical sensing.

机构信息

Materials Science and Engineering Department, Sharif University of Technology, P.O. Box 11155-9466, Azadi Avenue, Tehran, Iran.

Department of Chemistry, Université de Sherbrooke, QC, J1K 2R1, Canada.

出版信息

Mikrochim Acta. 2021 Jan 28;188(2):57. doi: 10.1007/s00604-021-04714-3.

Abstract

This review summarizes the progress that has been made in the use of nanostructured SPR-based chemical sensors and biosensors. Following an introduction into the field, a first large section covers principles of nanomaterial-based SPR sensing, mainly on methods using noble metal nanoparticles (spheres, cubes, triangular plates, etc.). The next section covers methods for functionalization of plasmonic nanostructures, with subsections on functionalization using (a) amino acids and proteins; (b) oligonucleotides, (c) organic polymers, and (d) organic compounds. Several tables are presented that give an overview on the wealth of methods and materials published. A concluding section summarizes the current status, addresses current challenges, and gives an outlook on potential future trends. This review is not intended to be a comprehensive compilation of the literature in the field but rather is a systematic overview of the state of the art in surface chemistry of plasmonic nanostructures. The ability of various ligands and receptors for functionalization of nanoparticles as well as their sensing capability is discussed.

摘要

这篇综述总结了基于纳米结构表面等离子体共振(SPR)的化学传感器和生物传感器的应用进展。在介绍该领域之后,首先涵盖了基于纳米材料的 SPR 传感原理,主要介绍了使用贵金属纳米粒子(球体、立方体、三角形板等)的方法。下一部分介绍了等离子体纳米结构功能化的方法,其中包括(a)氨基酸和蛋白质;(b)寡核苷酸;(c)有机聚合物;(d)有机化合物的功能化方法。本文呈现了几个表格,概述了已发表的大量方法和材料。最后一部分总结了当前的现状,讨论了当前的挑战,并展望了未来潜在的趋势。本文综述并非旨在全面汇编该领域的文献,而是对等离子体纳米结构表面化学的最新进展进行系统概述。本文讨论了各种配体和受体对纳米粒子进行功能化的能力及其传感性能。

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