Publication | Closed Access
Quasi Optical Cavity of Hierarchical ZnO Nanosheets@Ag Nanoravines with Synergy of Near- and Far-Field Effects for in Situ Raman Detection
67
Citations
20
References
2019
Year
Optical MaterialsEngineeringMetal NanoparticlesSurface-enhanced Raman ScatteringChemistryOptical PropertiesFar-field EffectsQuasi Optical CavityNanophotonicsPlasmonic MaterialMaterials ScienceNanotechnologySpatial Hot SpotsRaman EnhancementHot SpotsPlasmonicsSitu Raman DetectionNanomaterialsApplied Physics
The vertically interlaced hierarchical structure (HS) of ZnO nanosheets (NSs)@Ag nanoravines (NRs) as a quasi optical cavity (QOC) for Raman enhancement has been studied experimentally and theoretically in this work. A novel synergism of near- and far-field effects of Ag NRs is facilitated by the multiple oscillation of light inside the ZnO QOC, providing wide distributions of "hot spots" in a large space. The "spatial hot spots" in the HS bring reliable signal collection in in situ Raman detection. Without any specific materials and methods adopted, this HS provides researchers a new way to adjust the light in the fields of Raman enhancement.
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