Electrodics and Electrocatalysis Division (EEC), CSIR-Central Electrochemical Research Institute (CECRI), Karaikudi 630003, Tamil Nadu, India.
Academy of Scientific and Innovative Research (AcSIR), Ghaziabad 201002, Uttar Pradesh, India.
Biosensors (Basel). 2023 Jan 6;13(1):102. doi: 10.3390/bios13010102.
Two-dimensional nanostructures (2DNS) attract tremendous interest and have emerged as potential materials for a variety of applications, including biomolecule sensing, due to their high surface-to-volume ratio, tuneable optical and electronic properties. Advancements in the engineering of 2DNS and associated technologies have opened up new opportunities. Surface-enhanced Raman scattering (SERS) is a rapid, highly sensitive, non-destructive analytical technique with exceptional signal amplification potential. Several structurally and chemically engineered 2DNS with added advantages (e.g., π-π* interaction), over plasmonic SERS substrates, have been developed specifically towards biomolecule sensing in a complex matrix, such as biological fluids. This review focuses on the recent developments of 2DNS-SERS substrates for biomolecule sensor applications. The recent advancements in engineered 2DNS, particularly for SERS substrates, have been systematically surveyed. In SERS substrates, 2DNS are used as either a standalone signal enhancer or as support for the dispersion of plasmonic nanostructures. The current challenges and future opportunities in this synergetic combination have also been discussed. Given the prospects in the design and preparation of newer 2DNS, this review can give a critical view on the current status, challenges and opportunities to extrapolate their applications in biomolecule detection.
二维纳米结构 (2DNS) 由于其高的比表面积、可调谐的光学和电子特性,吸引了极大的兴趣,并已成为各种应用的潜在材料,包括生物分子传感。2DNS 的工程和相关技术的进步开辟了新的机会。表面增强拉曼散射 (SERS) 是一种快速、高灵敏、非破坏性的分析技术,具有出色的信号放大潜力。已经开发了几种结构和化学工程的 2DNS,它们具有额外的优势(例如,π-π*相互作用),优于等离子体 SERS 衬底,专门用于复杂基质中的生物分子传感,例如生物流体。本文综述了用于生物分子传感应用的 2DNS-SERS 衬底的最新进展。系统地调查了用于 SERS 衬底的工程 2DNS 的最新进展。在 SERS 衬底中,2DNS 既可以作为独立的信号增强剂,也可以作为等离子体纳米结构分散的支撑。还讨论了这种协同组合中的当前挑战和未来机遇。鉴于在设计和制备新型 2DNS 方面的前景,本文综述可以对其在生物分子检测中的应用的现状、挑战和机遇进行批判性评价。