Surface-Enhanced Raman Spectroscopy
Спектроскопия Рамана с усилением на поверхности
2008-05-07
SCID: 54.1/ht79qydk
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chemical warfare agent detectionlocalized surface plasmon resonancemetal film over nanospherenanosphere lithographysurface-enhanced Raman spectroscopy
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Abstract (AI)
The ability to control the size, shape, and material of a surface has reinvigorated the field of surface-enhanced Raman spectroscopy (SERS). Because excitation of the localized surface plasmon resonance of a nanostructured surface or nanoparticle lies at the heart of SERS, the ability to reliably control the surface characteristics has taken SERS from an interesting surface phenomenon to a rapidly developing analytical tool. This article first explains many fundamental features of SERS and then describes the use of nanosphere lithography for the fabrication of highly reproducible and robust SERS substrates. In particular, we review metal film over nanosphere surfaces as excellent candidates for several experiments that were once impossible with more primitive SERS substrates (e.g., metal island films). The article also describes progress in applying SERS to the detection of chemical warfare agents and several biological molecules.
Key Findings
1
Control over surface size, shape, and material has transformed SERS into a rapidly developing analytical tool.
2
Excitation of localized surface plasmon resonance of nanostructured surfaces or nanoparticles is central to SERS enhancement.
3
Metal film over nanosphere (MFON) surfaces are excellent candidates enabling experiments not possible with primitive substrates like metal island films.
4
Nanosphere lithography enables fabrication of highly reproducible and robust SERS substrates.
5
SERS progress has enabled detection applications including chemical warfare agents and several biological molecules.
Research Object
Nanostructured SERS substrates (including metal film over nanosphere surfaces and nanoparticles) used for surface-enhanced Raman spectroscopy
Research Subject
Control and influence of surface size, shape, material and localized surface plasmon resonance on SERS performance, fabrication reproducibility via nanosphere lithography (metal film over nanosphere surfaces), and applications to detection of chemical warfare agents and biological molecules
Publication Details
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2008-05-07
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