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Effcient Near-Infrared Quantum Cutting in Tm3+/Yb3 Codoped LiYF4 Single Crystals for Solar Photovoltaic
Authors:Li Fu  Hai-ping Xia  Yan-ming Dong  Shan-shan Li  Xue-mei Gu  Jian-li Zhang  Dong-jie Wang  Hao-chuan Jiang  Bao-jiu Chen
Institution:1.Key laboratory of Photoelectronic Materials, Ningbo University, Ningbo 315211, China2.Ningbo Institute of Materials Technology and Engineering, the Chinese Academy of Sciences, Ningbo 315211, China3.Department of Physics, Dalian Maritime University, Dalian 116026, China
Abstract:Downconversion (DC) with emission of two near-infrared photons about 1000 nm for each blue photon absorbed was obtained in thulium (Tm3+) and ytterbium (Yb3 ) codoped yt-trium lithium fluoride (LiYF4) single crystals grown by an improved Bridgman method. The luminescent properties of the crystals were measured through photoluminescence excitation, emission spectra and decay curves. Luminescence between 960 and 1050 nm from Yb3 : 2F5/22F7/2 transition, which was originated from the DC from Tm3 ions to Yb3 ions, was observed under the excitation of blue photon at 465 nm. Moreover, the energy transfer processes were studied based on the Inokuti-Hirayama model, and the results indicated that the energy transfer from Tm3 to Yb3 was an electric dipole-dipole interaction. The max-imum quantum cutting effciency approached up to 167.5% in LiYF4 single crystal codoped with 0.49mol% Tm3 and 5.99mol% Yb3 . Application of this crystal has prospects for increasing the energy e ciency of crystalline Si solar cells by photon doubling of the high energy part of the solar spectrum
Keywords:Quantum cutting  Energy transfer  LiYF4 single crystals  Tm3+/Yb3
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