Abstract
The optical properties of the transparent wavelength-conversion film containing 38.8 wt % YVO 4 : Bi3+, Eu3+ nanoparticles of 10.8±1.6 nm in size are compared to that of the film containing 30.0 wt % micron-sized particles of 1.12±0.48 μm in size. The photoluminescence intensity at 619 nm corresponding to the f-f transition of Eu3+ for the film containing nanoparticles increases with increasing the film thickness up to 400 μm, whereas that of the film containing micron-sized particles reaches the maximum at the film thickness of ∼40 μm. The transmittance at 619 nm for the former is ∼96% irrespective of the film thickness, whereas that is less than 0.17% for the latter. These results suggest that the transparent film of YVO 4 : Bi 3+ , Eu 3+ nanoparticles has markedly low light-scattering loss. © 2009 The Electrochemical Society.
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CITATION STYLE
Takeshita, S., Nakayama, K., Isobe, T., Sawayama, T., & Niikura, S. (2009). Optical Properties of Transparent Wavelength-Conversion Film Prepared from YVO[sub 4]:Bi[sup 3+],Eu[sup 3+] Nanophosphors. Journal of The Electrochemical Society, 156(9), J273. https://doi.org/10.1149/1.3166361
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