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Hyperspectral Raman imaging using Bragg tunable filters of graphene and other low‐dimensional materials

机译:使用石墨烯和其他低维材料的布拉格可调滤光器的高光谱拉曼成像

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> Hyperspectral Raman imaging is presented as a powerful method to acquire quantitative as well as qualitative information on low‐dimensional materials. The method is, however, not widely used due to limitations of the Raman scanning instruments. Here we present a hyperspectral Raman system based on Bragg tunable filtering that is capable of global imaging with significantly reduced acquisition time and improved sensitivity compared to scanning confocal Raman microscopes. The operation principles of the instrument are presented, and the performance is benchmarked using a calibrated carbon nanotube sample. Examples of various applications are shown to illustrate the abilities of the technique to characterize samples deposited on oxidized silicon substrates, including graphene stacks prepared by chemical‐vapor deposition, exfoliated MoS 2 , and carbon nanotubes filled with dye molecules. The wealth of information available through this hyperspectral Raman imaging technique opens many new ways to probe the properties of complex low‐dimensional materials. Copyright ? 2017 John Wiley & Sons, Ltd.
机译: >高光谱拉曼成像作为获取定量的强大方法,低维材料的定性信息。然而,由于拉曼扫描仪器的限制,该方法是不被广泛使用的。在这里,我们介绍了一种基于布拉格可调滤波的高光谱拉曼系统,其能够与扫描共聚焦拉曼显微镜相比,具有显着降低的采集时间和改善的灵敏度。提出了仪器的操作原理,并且性能使用校准的碳纳米管样品进行基准测试。示出了各种应用的实例来说明该技术表征沉积在氧化硅基衬底上的样品的能力,包括通过化学 - 气相沉积,剥落的MOS 2 和填充有染料分子的碳纳米管制备的石墨烯叠层。通过此高光谱拉曼成像技术可获得的丰富信息可打开许多新方法来探讨复杂的低维材料的性质。版权? 2017年John Wiley& SONS,LTD。

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