Serafinelli Caterina, Fantoni Alessandro, Alegria Elisabete C B A, Vieira Manuela
Instituto Superior de Engenharia de Lisboa-Instituto Politécnico de Lisboa, 1949-014 Lisboa, Portugal.
Centro de Química Estrutural, Institute of Molecular Sciences, Instituto Superior Técnico, Universidade de Lisboa, 1049-001 Lisboa, Portugal.
Biosensors (Basel). 2022 Apr 9;12(4):225. doi: 10.3390/bios12040225.
In SERS analysis, the specificity of molecular fingerprints is combined with potential single-molecule sensitivity so that is an attractive tool to detect molecules in trace amounts. Although several substrates have been widely used from early on, there are still some problems such as the difficulties to bind some molecules to the substrate. With the development of nanotechnology, an increasing interest has been focused on plasmonic metal nanoparticles hybridized with (2D) nanomaterials due to their unique properties. More frequently, the excellent properties of the hybrids compounds have been used to improve the drawbacks of the SERS platforms in order to create a system with outstanding properties. In this review, the physics and working principles of SERS will be provided along with the properties of differently shaped metal nanoparticles. After that, an overview on how the hybrid compounds can be engineered to obtain the SERS platform with unique properties will be given.
在表面增强拉曼光谱(SERS)分析中,分子指纹的特异性与潜在的单分子灵敏度相结合,因此它是检测痕量分子的一种有吸引力的工具。尽管从早期就开始广泛使用几种底物,但仍然存在一些问题,例如难以将某些分子结合到底物上。随着纳米技术的发展,由于其独特的性质,越来越多的兴趣集中在与二维(2D)纳米材料杂交的等离子体金属纳米颗粒上。更常见的是,杂化化合物的优异性能已被用于改善SERS平台的缺点,以创建具有出色性能的系统。在这篇综述中,将介绍SERS的物理原理和工作原理以及不同形状金属纳米颗粒的性质。之后,将概述如何设计杂化化合物以获得具有独特性质的SERS平台。