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壳隔离针尖增强拉曼光谱与荧光光谱

Shell-Isolated Tip-Enhanced Raman and Fluorescence Spectroscopy.

作者信息

Huang Ya-Ping, Huang Sheng-Chao, Wang Xiang-Jie, Bodappa Nataraju, Li Chao-Yu, Yin Hao, Su Hai-Sheng, Meng Meng, Zhang Hua, Ren Bin, Yang Zhi-Lin, Zenobi Renato, Tian Zhong-Qun, Li Jian-Feng

机构信息

MOE Key Laboratory of Spectrochemical Analysis and Instrumentation, State Key Laboratory of Physical Chemistry of Solid Surfaces,iChEM, College of Chemistry and Chemical Engineering, Xiamen University, Xiamen, 361005, China.

Department of Physics, Research Institute for Biomimetics and Soft Matter, Xiamen University, Xiamen, 361005, China.

出版信息

Angew Chem Int Ed Engl. 2018 Jun 18;57(25):7523-7527. doi: 10.1002/anie.201802892. Epub 2018 Apr 26.

Abstract

Tip-enhanced Raman spectroscopy can provide molecular fingerprint information with ultrahigh spatial resolution, but the tip will be easily contaminated, thus leading to artifacts. It also remains a great challenge to establish tip-enhanced fluorescence because of the quenching resulting from the proximity of the metal tip. Herein, we report shell-isolated tip-enhanced Raman and fluorescence spectroscopies by employing ultrathin shell-isolated tips fabricated by atomic layer deposition. Such shell-isolated tips not only show outstanding electromagnetic field enhancement in TERS but also exclude interference by contaminants, thus greatly promoting applications in solution. Tip-enhanced fluorescence has also been achieved using these shell-isolated tips, with enhancement factors of up to 1.7×10 , consistent with theoretical simulations. Furthermore, tip-enhanced Raman and fluorescence signals are acquired simultaneously, and their relative intensities can be manipulated by changing the shell thickness. This work opens a new avenue for ultrahigh resolution surface analysis using plasmon-enhanced spectroscopies.

摘要

针尖增强拉曼光谱能够以超高空间分辨率提供分子指纹信息,但针尖容易被污染,从而导致伪像。由于金属针尖的接近导致猝灭,建立针尖增强荧光仍然是一个巨大的挑战。在此,我们报告了通过采用原子层沉积制备的超薄壳层隔离针尖实现的壳层隔离针尖增强拉曼和荧光光谱。这种壳层隔离针尖不仅在针尖增强拉曼光谱中表现出出色的电磁场增强,而且排除了污染物的干扰,从而极大地促进了在溶液中的应用。使用这些壳层隔离针尖也实现了针尖增强荧光,增强因子高达1.7×10 ,与理论模拟结果一致。此外,同时获得了针尖增强拉曼和荧光信号,并且可以通过改变壳层厚度来控制它们的相对强度。这项工作为使用等离子体增强光谱进行超高分辨率表面分析开辟了一条新途径。

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