Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
11032805 | Optical Materials | 2018 | 8 Pages |
Abstract
Energy transfer from Bi3+ to Nd3+ in La2GeO5 occurs, proving that energy transfer mechanism of Bi3+âNd3+ is an electric dipole-dipole (DMSOâd6) interaction. The energy transfer efficiency of Bi3+âNd3+ and theoretical quantum efficiency for La2GeO5: Bi3+, Nd3+ are calculated to be as high as 91% and 191%, respectively. La1.92GeO5:0.03Bi3+, 0.05Nd3+ phosphor presents a promising thermal behavior with an activation energy of 0.152â¯eV. Thus, the development of near-infrared downconversion Bi3+, Nd3+ co-doped phosphors might open up a new approach to achieve high efficiency silicon solar cells by means of quantum cutting.
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Ceramics and Composites
Authors
Jianming Li, Shaoan Zhang, Haoming Luo, Zhongfei Mu, Zhenzhang Li, Qingping Du, Junqin Feng, Fugen Wu,