JST-ERATO Yamauchi Materials Space Tectonics Project, National Institute for Materials Science (NIMS), 1-1 Namiki, Tsukuba, Ibaraki, 305-0044, Japan.
Research School of Chemistry and Applied Biomedical Sciences, Tomsk Polytechnic University, Tomsk, 634050, Russian Federation.
Small. 2022 Jun;18(25):e2107182. doi: 10.1002/smll.202107182. Epub 2022 May 15.
This article reviews recent fabrication methods for surface-enhanced Raman spectroscopy (SERS) substrates with a focus on advanced nanoarchitecture based on noble metals with special nanospaces (round tips, gaps, and porous spaces), nanolayered 2D materials, including hybridization with metallic nanostructures (NSs), and the contemporary repertoire of nanoarchitecturing with organic molecules. The use of SERS for multidisciplinary applications has been extensively investigated because the considerably enhanced signal intensity enables the detection of a very small number of molecules with molecular fingerprints. Nanoarchitecture strategies for the design of new NSs play a vital role in developing SERS substrates. In this review, recent achievements with respect to the special morphology of metallic NSs are discussed, and future directions are outlined for the development of available NSs with reproducible preparation and well-controlled nanoarchitecture. Nanolayered 2D materials are proposed for SERS applications as an alternative to the noble metals. The modern solutions to existing limitations for their applications are described together with the state-of-the-art in bio/environmental SERS sensing using 2D materials-based composites. To complement the existing toolbox of plasmonic inorganic NSs, hybridization with organic molecules is proposed to improve the stability of NSs and selectivity of SERS sensing by hybridizing with small or large organic molecules.
本文综述了表面增强拉曼光谱(SERS)衬底的最新制造方法,重点介绍了基于贵金属的先进纳米结构,包括具有特殊纳米空间(圆形尖端、间隙和多孔空间)的纳米结构、纳米层状二维材料,包括与金属纳米结构(NSs)的杂交以及使用有机分子的当代纳米结构设计。由于增强的信号强度使能够检测到具有分子指纹的极少数分子,因此 SERS 已被广泛用于多学科应用。用于设计新 NS 的纳米结构策略在开发 SERS 衬底方面发挥着重要作用。在这篇综述中,讨论了关于金属 NS 特殊形态的最新成果,并为具有可重复制备和良好控制纳米结构的现有 NS 的开发勾勒了未来方向。纳米层状二维材料作为贵金属的替代品被提出用于 SERS 应用。描述了针对其应用现有局限性的现代解决方案,以及使用基于二维材料的复合材料进行生物/环境 SERS 传感的最新进展。为了补充现有的等离子体无机 NS 工具包,建议与小分子或大分子杂交,以通过与有机分子杂交来提高 NS 的稳定性和 SERS 传感的选择性。