Publication | Closed Access
Highly Raman‐Enhancing Substrates Based on Silver Nanoparticle Arrays with Tunable Sub‐10<b> </b>nm Gaps
475
Citations
39
References
2006
Year
Materials SciencePlasmonicsEngineeringMetal NanoparticlesNanomaterialsNanotechnologySilver Nanoparticle ArraysSurface-enhanced Raman ScatteringApplied PhysicsGap SizeMetallic NanomaterialsChemistrySurface-enhanced Raman SpectroscopicCollective Sers EffectPlasmonic Material
Uniform and highly surface-enhanced Raman spectroscopic (SERS)-active substrates have been fabricated using Ag nanoparticle arrays with unprecedented small tunable gaps. The dependence of the enhancing capability of the substrate on the gap size provides quantitative evidence for the collective SERS effect and confirms predictions of interparticle-coupling-induced Raman enhancement.
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