Effect of heavy-doping Eu3+ and charge compensation on crystalline phase and luminescence properties of K2CaP2O7 phosphors emitting orange-red light
摘要
A series of K2Ca1-xP2O7:xEu3+ phosphors were prepared by a high-temperature solid-state reaction method. The crystal structure was analyzed by X-ray diffraction (XRD). Fluorescence spectra, decay curves, and color coordinates were investigated. Under excitation at 393 nm, the strongest emission peak was located at 590 nm, corresponding to the 5D0→7F1 transition of Eu3+, and the sub-strongest one was located at 612 nm which belongs to the 5D0→7F2 transition of Eu3+. XRD results show that the patterns doped with a small amount of Eu3+ were fitted well with the standard card of K2CaP2O7, while the pattern with the doping of high concentration Eu3+ (heavy-doping) indicated the co-existence of K2CaP2O7 and EuPO4 phase which leads to luminescent intensity of phosphors enhance remarkablely. The concentration quenching mechanism was explained through dipole-dipole interaction. Different doping amounts of Eu3+ and charge compensators will affect the symmetry of the host lattice, thereby affecting the emission intensity ratio of orange and red light. The color coordinates of K2Ca0.49P2O7:0.51Eu3+ and K2Ca0.33P2O7:0.67Eu3+, 0.1Na+ phosphor were near the red region, which was close to commercial red-emitting phosphors Y2O3:Eu3+ and standard red light, respectively.
Graphical abstractA series of K2CaP2O7 phosphors emitting orange-red light with different concentrations of Eu3+ doping and alkali metal ions co-doping were synthesized via a high-temperature solid-state method, and their structure and luminescent properties were characterized. A new strategy for adjusting the light color parameters of K2CaP2O7 phosphors has been constructed.