Surface-Enhanced Raman Scattering: 50 Years of Development and Its Role in Nanobiotechnology

IF 0.8 Q3 Engineering Nanotechnologies in Russia Pub Date : 2024-08-06 DOI:10.1134/s2635167623601468
E. V. Solovyeva
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Abstract

The review covers the main stages in the development and achievements of surface-enhanced Raman scattering (SERS), the fiftieth anniversary of which we celebrate in 2024. Modern theoretical views on the SERS effect, a retrospective of the substrates and materials used, and expansion of the range of studied compounds and objects are presented. Using the example of the most important and interesting applications of SERS spectroscopy, the achievements of the last decade are considered; its role in modern surface chemistry, nanotechnology, bioanalysis and bioimaging methods is shown.

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表面增强拉曼散射:50 年的发展及其在纳米生物技术中的作用
摘要 这篇综述涵盖了表面增强拉曼散射(SERS)的主要发展阶段和成就。文中介绍了有关 SERS 效应的现代理论观点、所使用基底和材料的回顾,以及所研究化合物和对象范围的扩展。以 SERS 光谱最重要和最有趣的应用为例,介绍了过去十年的成就;展示了其在现代表面化学、纳米技术、生物分析和生物成像方法中的作用。
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来源期刊
Nanotechnologies in Russia
Nanotechnologies in Russia NANOSCIENCE & NANOTECHNOLOGY-
CiteScore
1.20
自引率
0.00%
发文量
0
期刊介绍: Nanobiotechnology Reports publishes interdisciplinary research articles on fundamental aspects of the structure and properties of nanoscale objects and nanomaterials, polymeric and bioorganic molecules, and supramolecular and biohybrid complexes, as well as articles that discuss technologies for their preparation and processing, and practical implementation of products, devices, and nature-like systems based on them. The journal publishes original articles and reviews that meet the highest scientific quality standards in the following areas of science and technology studies: self-organizing structures and nanoassemblies; nanostructures, including nanotubes; functional and structural nanomaterials; polymeric, bioorganic, and hybrid nanomaterials; devices and products based on nanomaterials and nanotechnology; nanobiology and genetics, and omics technologies; nanobiomedicine and nanopharmaceutics; nanoelectronics and neuromorphic computing systems; neurocognitive systems and technologies; nanophotonics; natural science methods in a study of cultural heritage items; metrology, standardization, and monitoring in nanotechnology.
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