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Nanoscale investigation of materials, chemical reactions, and biological systems by tip enhanced Raman spectroscopy - a review

机译:尖端增强拉曼光谱纳米材料,化学反应和生物体系的纳米级调查 - 评论

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摘要

Almost two decades after the first experimental verification, tip enhanced Raman spectroscopy has developed into a proficient tool of surface characterisation and provides a wealth of chemical and structural information with single molecule sensitivity and nanometric spatial resolution. We recall some highlights of this powerful tool for the investigation of diverse systems to then discuss how the structural arrangement of carbon composites and semiconductor materials has been explored. The advantages of tip enhanced Raman spectroscopy for the study of biological systems, in particular DNA and RNA, will be detailed. We will also present the promise of electrochemical tip enhanced Raman spectroscopy for the real time monitoring of chemical reactions. Eventually, we will discuss the importance of the metallic tip signal, specifically for the imaging of composition and configuration changes in various samples through variations in refractive index or permittivity.
机译:在第一次实验验证后近二十年,尖端增强拉曼光谱已经发展成熟练的表面特征工具,提供了一种具有单分子灵敏度和纳米空间分辨率的化学和结构信息。 我们记得这种强大的工具的一些亮点,用于调查各种系统,然后讨论如何探讨碳复合材料和半导体材料的结构排列。 将详细介绍尖端增强拉曼光谱的优点,特别是DNA和RNA的研究。 我们还将介绍电化学尖端增强拉曼光谱的承诺,以便实时监测化学反应。 最终,我们将讨论金属尖端信号的重要性,特别是通过折射率或介电常数的变化来进行各种样品的成分和构图的成像和配置变化。

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