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Mechanisms behind green photoluminescence in ZnO phosphor powders

Journal of Applied Physics · 1996 · Vol. 79(10) · pp. 7983–7990
K. VanheusdenW. L. WarrenC. H. SeagerD. R. TallantJ. VoigtBruce E. Gnade

Abstract

We explore the interrelationships between the green 510 nm emission, the free-carrier concentration, and the paramagnetic oxygen-vacancy density in commercial ZnO phosphors by combining photoluminescence, optical-absorption, and electron-paramagnetic-resonance spectroscopies. We find that the green emission intensity is strongly influenced by free-carrier depletion at the particle surface, particularly for small particles and/or low doping. Our data suggest that the singly ionized oxygen vacancy is responsible for the green emission in ZnO; this emission results from the recombination of a photogenerated hole with the singly ionized charge state of this defect.

Gas Sensing Nanomaterials and SensorsLuminescence Properties of Advanced MaterialsGa2O3 and related materialsIconCitationPhosphorPhotoluminescenceInformation retrievalComputer scienceWorld Wide WebDownloadPublishingPhysics
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Photothermal deflection spectroscopy and detection
Applied Optics · 1981 · 1,352 citations
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