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单壁碳纳米管束针尖增强近场拉曼光谱探测实验研究
引用本文:吴晓斌,王佳,王瑞,许吉英,田芊,郁鉴源.单壁碳纳米管束针尖增强近场拉曼光谱探测实验研究[J].光谱学与光谱分析,2009,29(10):2681-2685.
作者姓名:吴晓斌  王佳  王瑞  许吉英  田芊  郁鉴源
作者单位: 
基金项目:国家自然科学基金,国家重点基础研究发展规划(973计划) 
摘    要:针尖增强近场拉曼光谱术是最近发展起来的光谱技术.金属探针在获得样品纳米局域表面形貌的同时,受激光激发,在针尖附近产生增强电磁场,得到与形貌位置精确对应的针尖增强局域拉曼光谱,形貌和光谱的结合实现了纳米局域的光谱指认.文章建立了一套针尖增强近场拉曼光谱测龋装置,并用此装置对电弧法合成的单壁碳纳米管进行了近场拉曼光谱探测.测量了直径为100 nm单壁碳纳米管束的针尖增强拉曼光谱,进一步得到至多3根单壁碳纳米管的近场拉曼光谱,实现了超衍射分辨光谱探测.通过与远场拉曼光谱比较发现,针尖增强近场拉曼光谱的增强因子大于230倍.实验证明,同时具有超衍射空间分辨和拉曼光谱信号增强能力的针尖增强近场拉曼光谱术将是纳米材料和纳米结构表征的一种重要方法.

关 键 词:近场光学  近场拉曼光谱术  单壁碳纳米管  针尖增强  针尖增强拉曼光谱
收稿时间:2008/10/22

Detection of Single-Walled Carbon Nanotube Bundles by Tip-Enhanced Raman Spectroscopy
Abstract:Raman spectroscopy is a powerful technique in the characterization of carbon nanotubes (CNTs). However, this spectral method is subject to two obstacles. One is spatial resolution, namely the diffraction limits of light, and the other is its inherent small Raman cross section and weak signal. To resolve these problems, a new approach has been developed, denoted tip-enhanced Raman spectroscopy (TERS). TERS has been demonstrated to be a powerful spectroscopic and microscopic technique to characterize nanomaterial or nanostructures. Excited by a focused laser beam, an enhanced electric field is generated in the vicinity of a metallic tip because of the surface plasmon polariton (SPP) and lightening rod effect. Consequently, Raman signal from the sample area illuminated by the enhanced field nearby the tip is enhanced. At the same time, the topography is obtained in the nanometer scale. The exact corresponding relationship between the localized Raman and the topography makes the Raman identification at the nanometer scale to be feasible. In the present paper, based on an inverted microscope and a metallic AFM tip, a tip-enhanced Raman system was set up. The radius of the Au- coated metallic tip is about 30 nm. The 532 nm laser passes through a high numerical objective (NA0.95) from the bottom to illuminate the tip to excite the enhanced electric field. Corresponding with the AFM image, the tip-enhanced near-field Raman of a 100 nm diameter single-walled carbon nanotube (SWNT) bundles was obtained. The SWNTs were prepared by arc method. Furthermore, the near-field Raman of about 3 SWNTs of the bundles was received with the spatial resolution beyond the diffraction limit. Compared with the far-field Raman, the enhancement factor of the tip-enhanced Raman is more than 230. With the super-diffraction spatial resolution and the tip-enhanced Raman ability, tip-enhanced Raman spectroscopy will play an important role in the nano-material and nano-structure characterization.
Keywords:Near-field optics  Near-field Raman spectroscopy  Single-walled carbon nanotubes  Tip-enhanced optics  Tip-enhanced Raman spectroscopy(TERS)
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