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非等离子体表面增强拉曼光谱(SERS)中化学增强机制的研究。

Study of Chemical Enhancement Mechanism in Non-plasmonic Surface Enhanced Raman Spectroscopy (SERS).

作者信息

Kim Jayeong, Jang Yujin, Kim Nam-Jung, Kim Heehun, Yi Gyu-Chul, Shin Yukyung, Kim Myung Hwa, Yoon Seokhyun

机构信息

Department of Physics, Ewha Womans University, Seoul, South Korea.

Department of Physics and Astronomy, Institute of Applied Physics, Research Institute of Advanced Materials, Seoul National University, Seoul, South Korea.

出版信息

Front Chem. 2019 Aug 20;7:582. doi: 10.3389/fchem.2019.00582. eCollection 2019.

Abstract

Surface enhanced Raman spectroscopy (SERS) has been intensively investigated during the past decades for its enormous electromagnetic field enhancement near the nanoscale metallic surfaces. Chemical enhancement of SERS, however, remains rather elusive despite intensive research efforts, mainly due to the relatively complex enhancing factors and inconsistent experimental results. To study details of chemical enhancement mechanism, we prepared various low dimensional semiconductor substrates such as ZnO and GaN that were fabricated via metal organic chemical vapor deposition process. We used three kinds of molecules (4-MPY, 4-MBA, 4-ATP) as analytes to measure SERS spectra under non-plasmonic conditions to understand charge transfer mechanisms between a substrate and analyte molecules leading to chemical enhancement. We observed that there is a preferential route for charge transfer responsible for chemical enhancement, that is, there exists a dominant enhancement process in non-plasmonic SERS. To further confirm our idea of charge transfer mechanism, we used a combination of 2-dimensional transition metal dichalcogenide substrates and analyte molecules. We also observed significant enhancement of Raman signal from molecules adsorbed on 2-dimensional transition metal dichalcogenide surface that is completely consistent with our previous results. We also discuss crucial factors for increasing enhancement factors for chemical enhancement without involving plasmonic resonance.

摘要

在过去几十年中,表面增强拉曼光谱(SERS)因其在纳米级金属表面附近具有巨大的电磁场增强效应而受到广泛研究。然而,尽管进行了大量研究工作,SERS的化学增强仍然相当难以捉摸,主要是由于增强因素相对复杂且实验结果不一致。为了研究化学增强机制的细节,我们制备了各种低维半导体衬底,如通过金属有机化学气相沉积工艺制造的ZnO和GaN。我们使用三种分子(4-甲基吡啶、4-甲基苯甲酸、4-氨基苯硫酚)作为分析物,在非等离子体条件下测量SERS光谱,以了解衬底与分析物分子之间导致化学增强的电荷转移机制。我们观察到存在一种负责化学增强的电荷转移优先途径,即在非等离子体SERS中存在一个主导的增强过程。为了进一步证实我们的电荷转移机制观点,我们使用了二维过渡金属二硫属化物衬底和分析物分子的组合。我们还观察到吸附在二维过渡金属二硫属化物表面的分子的拉曼信号有显著增强,这与我们之前的结果完全一致。我们还讨论了在不涉及等离子体共振的情况下提高化学增强增强因子的关键因素。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/149d/6710363/8e61c9a9acb4/fchem-07-00582-g0001.jpg

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