Title :
Efficient Quantum Cutting in Tb
3+/Yb
3+ Codoped
-NaYF
4 Single Crystals Grown by Bridgman Method Using KF Flux for Solar Photov
Author :
Jiazhong Zhang ; Haiping Xia ; Yongzhang Jiang ; Shuo Yang ; Haochuan Jiang ; Baojiu Chen
Author_Institution :
Key Lab. of Photo-Electron. Mater., Ningbo Univ., Ningbo, China
Abstract :
Tb3+/Yb3+ codoped α-NaYF4 single crystals with various Yb3+ concentrations and ~0.40 mol% Tb3+ are grown by Bridgman method using KF (Potassium fluoride) as flux with a temperature gradient of 70 °C/cm-90 °C/cm across the solid-liquid interface. The effect and mechanisms of KF in the growing process are studied. The crystal structure is characterized by means of XRD. The high transmission from 300 to 7350 nm and maximum phonon energy about 390 cm-1 for the α-NaYF4 single crystal are obtained from the measured transmission and Raman spectra, respectively. The luminescent properties of the crystals are investigated through excitation, emission spectra, and decay curves. Downconversion with emission of two near-infrared photons about 1000 nm for each blue photon at 486-nm absorption is obtained in Tb3+/Yb3+ codoped α-NaYF4 single crystals. Moreover, the energy transfer processes is studied based on the Inokuti-Hirayama model from the measured luminescent decay curves, and the results indicated that the interaction between Tb3+ and Yb3+ is electric dipole-dipole. The maximum quantum cutting efficiency approached 174.6% in α-NaYF4 single crystal with 0.42 mol% Tb3+ and 9.98 mol% Yb3+, making it a potential candidate for applications in silicon-based solar cells.
Keywords :
Raman spectra; X-ray diffraction; crystal growth from melt; crystal structure; infrared spectra; phonons; photoluminescence; sodium compounds; terbium; ultraviolet spectra; visible spectra; ytterbium; Bridgman method; Inokuti-Hirayama model; NaYF4:Tb,Yb; Raman spectra; XRD; blue photon; codoped single crystals; crystal structure; electric dipole-dipole; emission spectra; energy transfer process; excitation spectra; luminescent decay curves; luminescent properties; near-infrared photon emission; phonon energy; potassium fluoride flux; quantum cutting efficiency; silicon-based solar cells; solar photovoltaics; solid-liquid interface; temperature gradient; transmission spectra; Crystals; Energy exchange; Ions; Luminescence; Phonons; Photonics; Photovoltaic cells; $alpha$ -NaYF4 single crystals; α-NaYF4 single crystals;; Energy transfer; Quantum cutting; Tb3+/Yb3+; The flux Bridgman method; energy transfer; quantum cutting; the flux Bridgman method;
Journal_Title :
Quantum Electronics, IEEE Journal of
DOI :
10.1109/JQE.2015.2418756