Near-infrared luminescence and energy transfer processes in LaOF:Nd3+, Yb3+†
Abstract
Nd3+ and Yb3+ singly and codoped samples of LaOF were prepared by a hydrothermal synthesis method and the phase purity of samples was examined by X-ray powder diffraction. The Yb3+ concentration dependence of luminescence and decay times of LaOF:Nd3+, Yb3+ were investigated. Cross-relaxation energy transfer from Nd3+ (4D3/2 → 4G5/2) to Yb3+ (2F7/2 → 2F5/2) was confirmed not only based on the excitation spectra, but also by the decay properties of the Nd3+ 4D3/2 state. However, the dominant process was multi-phonon relaxation from Nd3+ higher levels to 4F3/2, followed by energy transfer to Yb3+ 2F5/2. In addition, host energy transfer to Yb3+ and back energy transfer from Yb3+ (2F5/2 → 2F7/2) to Nd3+ (4I9/2 → 4F3/2) were also revealed. The present study could be rewarding in the design of efficient spectral converters applied in silicon-based solar cells.