Plasmonic Core-Shell-Satellites with Abundant Electromagnetic Hotspots for Highly Sensitive and Reproducible SERS Detection

被引:7
作者
Pandey, Puran [1 ]
Kunwar, Sundar [2 ]
Shin, Ki-Hoon [1 ]
Seo, Min-Kyu [1 ]
Yoon, Jongwon [3 ]
Hong, Woong-Ki [4 ]
Sohn, Jung-Inn [1 ]
机构
[1] Dongguk Univ, Div Phys & Semicond Sci, Seoul 04620, South Korea
[2] Los Alamos Natl Lab, Ctr Integrated Nanotechnol CINT, Los Alamos, NM 87545 USA
[3] Jeonju Ctr, Korea Basic Sci Inst, Jeonju 54907, South Korea
[4] Korea Basic Sci Inst, Ctr Sci Instrumentat, Daejeon 34133, South Korea
基金
新加坡国家研究基金会;
关键词
SERS; plasmonic core-shell-satellite; Ag nanoparticles; hotspots; FDTD; ENHANCED RAMAN-SCATTERING; THIN AU; SURFACE; NANOPARTICLES; FILMS; GLASS; SIZE; AG;
D O I
10.3390/ijms222212191
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
In this work, we develop a Ag@Al2O3@Ag plasmonic core-shell-satellite (PCSS) to achieve highly sensitive and reproducible surface-enhanced Raman spectroscopy (SERS) detection of probe molecules. To fabricate PCSS nanostructures, we employ a simple hierarchical dewetting process of Ag films coupled with an atomic layer deposition (ALD) method for the Al2O3 shell. Compared to bare Ag nanoparticles, several advantages of fabricating PCSS nanostructures are discovered, including high surface roughness, high density of nanogaps between Ag core and Ag satellites, and nanogaps between adjacent Ag satellites. Finite-difference time-domain (FDTD) simulations of the PCSS nanostructure confirm an enhancement in the electromagnetic field intensity (hotspots) in the nanogap between the Ag core and the satellite generated by the Al2O3 shell, due to the strong core-satellite plasmonic coupling. The as-prepared PCSS-based SERS substrate demonstrates an enhancement factor (EF) of 1.7 x 10(7) and relative standard deviation (RSD) of ~7%, endowing our SERS platform with highly sensitive and reproducible detection of R6G molecules. We think that this method provides a simple approach for the fabrication of PCSS by a solid-state technique and a basis for developing a highly SERS-active substrate for practical applications.
引用
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页数:11
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