Pressure effect on optical properties and structure stability of LaPO4:Eu3+ hollow spheres
来源期刊:Journal of Rare Earths2010年第S1期
论文作者:赵智 左健 丁泽军
文章页码:254 - 257
摘 要:Uniform monoclinic monazite structure LaPO4:Eu3+ hollow spheres were s ynthesized via an attractive hydrothermal method owing to the higher yield and s implicity.Photoluminescence and Raman spectra of the sample were investigated u nder high pressure up to 26 GPa using diamond anvil cells.At ambient pressure,the sample exhibited same luminescent properties with that of bulk monazite LaPO 4:Eu3+.With the increase of pressure,the emission intensity of Eu3+ decreased and the half-widths of transition lines increased,while emission peaks showed a red shift toward longer wavelengths due to increase in crystal-field strength.No phase transformation appeared before amorphization for monoclinic LaPO4:Eu3+ hollow spheres,which was confirmed based on the analysis of high pressure Raman spectra.The large surface energy of hollow spheres was proposed to prevent the occurrence of phase transformation.
赵智,左健,丁泽军
Hefei National Laboratory for Physical Sciences at the Microscale,University o f Science and Technology of China
摘 要:Uniform monoclinic monazite structure LaPO4:Eu3+ hollow spheres were s ynthesized via an attractive hydrothermal method owing to the higher yield and s implicity.Photoluminescence and Raman spectra of the sample were investigated u nder high pressure up to 26 GPa using diamond anvil cells.At ambient pressure,the sample exhibited same luminescent properties with that of bulk monazite LaPO 4:Eu3+.With the increase of pressure,the emission intensity of Eu3+ decreased and the half-widths of transition lines increased,while emission peaks showed a red shift toward longer wavelengths due to increase in crystal-field strength.No phase transformation appeared before amorphization for monoclinic LaPO4:Eu3+ hollow spheres,which was confirmed based on the analysis of high pressure Raman spectra.The large surface energy of hollow spheres was proposed to prevent the occurrence of phase transformation.
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