Metal-Organic Framework-Enabled Trapping of Volatile Organic Compounds into Plasmonic Nanogaps for Surface-Enhanced Raman Scattering Detection

被引:19
作者
Liu, Yi [1 ]
Chui, Ka Kit [1 ]
Fang, Yini [1 ]
Wen, Shizheng [2 ]
Zhuo, Xiaolu [3 ]
Wang, Jianfang [1 ]
机构
[1] Chinese Univ Hong Kong, Dept Phys, Hong Kong 999077, Peoples R China
[2] Huaiyin Normal Univ, Sch Phys & Elect Elect Engn, Jiangsu Prov Key Lab Modern Measurement Technol &, Huaian 223300, Peoples R China
[3] Chinese Univ Hong Kong Shenzhen, Sch Sci & Engn, Shenzhen 518172, Peoples R China
关键词
gold nanocrystals; metal-organicframeworks; particle-on-mirror structures; plasmoncoupling; plasmon resonance; surface-enhanced Ramanscattering; GOLD NANOPARTICLE; SPECTROSCOPY; SUBSTRATE; RESONANCE; MODES; ARRAY;
D O I
10.1021/acsnano.4c00208
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Utilizing electromagnetic hotspots within plasmonic nanogaps is a promising approach to create ultrasensitive surface-enhanced Raman scattering (SERS) substrates. However, it is difficult for many molecules to get positioned in such nanogaps. Metal-organic frameworks (MOFs) are commonly used to absorb and concentrate diverse molecules. Herein, we combine these two strategies by introducing MOFs into plasmon-coupled nanogaps, which has so far remained experimentally challenging. Ultrasensitive SERS substrates are fabricated through the construction of nanoparticle-on-mirror structures, where Au nanocrystals are encapsulated with a zeolitic imidazolate framework-8 (ZIF-8) shell and then coupled to a gold film. The ZIF-8 shell, as a spacer that separates the Au nanocrystal and the Au film, can be adjusted in thickness over a wide range, which allows the electric field enhancement and plasmon resonance wavelength to be varied. By trapping Raman-active molecules within the ZIF-8 shell, we show that our plasmon-coupled structures exhibit a superior SERS detection performance. A range of volatile organic compounds at the concentrations of 10(-2) mg m(-3) can be detected sensitively and reliably. Our study therefore offers an attractive route for synergistically combining plasmonic electric field enhancement and MOF-enabled molecular enrichment to design and create SERS substrates for ultrasensitive detection.
引用
收藏
页码:11234 / 11244
页数:11
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