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Applications of Tip-enhanced Raman Spectroscopy: From Graphene to Catalysis

机译:尖端增强拉曼光谱的应用:从石墨烯到催化

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During the last two decades, tip-enhanced Raman spectroscopy (TERS) has emerged as a promising tool for non-destructive and label-free surface chemical imaging at the nanoscale. TERS is increasingly being used for nanoscale chemical charaterisation in a wide range of applications. Furthermore, tip-enhanced plasmonic near-field can also enhance local photoluminescence (PL) and fluorescence signals to perform tip-enhanced PL (TEPL) and fluorescence (TEFL) microscopy. In this article, we demonstrate the application of TERS to map structural defects within single-layer graphene, application of TEPL microscopy to map defects or contaminants within single-layer M0S2, combination of TERS, TEPL microscopy and photoconductive-atomic force microscopy for simultaneous topographical, chemical and electrical nanoscopy of organic photovoltaic devices and the application of TEFL microscopy to map catalytically active zeolite domains within industrially spent fluid cracking catalyst particles.
机译:在过去的二十年中,尖端增强拉曼光谱(TERS)成为一种有前途的工具,可用于纳米级的无损无标签表面化学成像。 TERS被越来越广泛地用于纳米级化学表征中。此外,尖端增强的等离子体近场还可以增强局部光致发光(PL)和荧光信号,以执行尖端增强的PL(TEPL)和荧光(TEFL)显微镜。在本文中,我们演示了TERS在单层石墨烯内绘制结构缺陷的应用程序,TEPL显微镜在单层M0S2内绘制缺陷或污染物的应用程序,TERS,TEPL显微镜和光电导原子力显微镜的组合用于同时形貌,有机光伏装置的化学和电学纳米技术,以及TEFL显微镜的应用,以绘制工业用过的流体裂化催化剂颗粒中的催化活性沸石域图。

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