In the present work,the effect of Eu^(3+)doping concentration on the structural and luminescence pro perties of Eu^(3+)doped CaZrO_(3)red phosphors was investigated.The phase purity and structural properties of the sy...In the present work,the effect of Eu^(3+)doping concentration on the structural and luminescence pro perties of Eu^(3+)doped CaZrO_(3)red phosphors was investigated.The phase purity and structural properties of the synthesized phosphors were studied by the Rietveld refinement method.Rietveld refinement confirms the occupancy of Eu^(3+)ions at the Ca^(2+)site in the CaZrO_(3)host.Furthermore,extended X-ray absorptionfine structure spectroscopy and photoluminescence spectroscopy were used to explore the local structure around Eu^(3+)ions and the location of Eu^(3+)ions.An extensive investigation on luminescence properties explored the UV-blue and sharp red emissions;and tuning of the colour with systematic doping concentration.The most bright red emission was achieved at 3 mol%Eu^(3+)doping concentration.The luminescence excitation-emission process and energy transfer mechanism were well depicted.The extensive luminescence investigation illustrated the origin of the UV-blue emission and the role of charge compensation in the luminescence phenomenon.Finally,the density of states(DOS)calculation using density functional theory has been introduced as a complementary investigation to support the modelling of the luminescence mechanism.DOS indicated the role of oxygen vacancy in the origin of UV-blue emission from the CaZrO_(3)host material and the energy transfer process.The correlation between struc tural and luminescence properties has been well illustrated in this article.The excited state lifetime and host to dopant energy transfer effciency were studied with the Eu^(3+)doping concentration.Small excited state lifetime and colour coordinates indicate the possibility of pink-red emitting 3 mol%Eu^(3+)doped CaZrO_(3)as a suitable candidate for light-emitting device applications.展开更多
文摘In the present work,the effect of Eu^(3+)doping concentration on the structural and luminescence pro perties of Eu^(3+)doped CaZrO_(3)red phosphors was investigated.The phase purity and structural properties of the synthesized phosphors were studied by the Rietveld refinement method.Rietveld refinement confirms the occupancy of Eu^(3+)ions at the Ca^(2+)site in the CaZrO_(3)host.Furthermore,extended X-ray absorptionfine structure spectroscopy and photoluminescence spectroscopy were used to explore the local structure around Eu^(3+)ions and the location of Eu^(3+)ions.An extensive investigation on luminescence properties explored the UV-blue and sharp red emissions;and tuning of the colour with systematic doping concentration.The most bright red emission was achieved at 3 mol%Eu^(3+)doping concentration.The luminescence excitation-emission process and energy transfer mechanism were well depicted.The extensive luminescence investigation illustrated the origin of the UV-blue emission and the role of charge compensation in the luminescence phenomenon.Finally,the density of states(DOS)calculation using density functional theory has been introduced as a complementary investigation to support the modelling of the luminescence mechanism.DOS indicated the role of oxygen vacancy in the origin of UV-blue emission from the CaZrO_(3)host material and the energy transfer process.The correlation between struc tural and luminescence properties has been well illustrated in this article.The excited state lifetime and host to dopant energy transfer effciency were studied with the Eu^(3+)doping concentration.Small excited state lifetime and colour coordinates indicate the possibility of pink-red emitting 3 mol%Eu^(3+)doped CaZrO_(3)as a suitable candidate for light-emitting device applications.