TY - JOUR
T1 - Structure and photoluminescence properties of Ce3-doped novel silicon-oxynitride Ba4-zMzSi8O 20-3xN2x (M=Mg, Ca, Sr)
AU - Fang, Y.
AU - Li, Y. Q.
AU - Xie, R. J.
AU - Hirosaki, N.
AU - Takade, T.
AU - Li, X. Y.
AU - Qiu, T.
PY - 2011/6
Y1 - 2011/6
N2 - Structural and photoluminescence properties of undoped and Ce 3-doped novel silicon-oxynitride phosphors of Ba4-zM zSi8O20-3xN2x (M=Mg, Sr, Ca) are reported. Single-phase solid solutions of Ba4-zMzSi 8O20-3xN2x oxynitride were synthesized by partial substitutions of 3O2-→2N3- and Ba→M (M=Mg, Ca, Sr) in orthorhombic Ba2Si4O10. The influences of the type of alkaline earth ions of M, the Ce3 concentration on the photoluminescence properties and thermal quenching behaviors of Ba3MSi8O20-3xN2x (M=Mg, Ca, Sr, x=0.5) were investigated. Under excitation at about 330 nm, Ba 3MSi8O20-3xN2x:Ce3 (x=0.5) exhibits efficient blue emission centered at 400450 nm in the range of 350650 nm owing to the 5d→4f transition of Ce3. The emission band of Ce3 shifts to long wavelength by increasing the ionic size of M due to the modification of the crystal field, as well as the Ce3 concentrations due to the Stokes shift and energy transfer or reabsorption of Ce3 ions. Among the silicon-oxynitride phosphors of Ba 3MSi8O18.5N:Ce3, M=Sr 0.6Ca0.4 possesses the best thermal stability probably related to its high onset of the absorption edge of Ce3.
AB - Structural and photoluminescence properties of undoped and Ce 3-doped novel silicon-oxynitride phosphors of Ba4-zM zSi8O20-3xN2x (M=Mg, Sr, Ca) are reported. Single-phase solid solutions of Ba4-zMzSi 8O20-3xN2x oxynitride were synthesized by partial substitutions of 3O2-→2N3- and Ba→M (M=Mg, Ca, Sr) in orthorhombic Ba2Si4O10. The influences of the type of alkaline earth ions of M, the Ce3 concentration on the photoluminescence properties and thermal quenching behaviors of Ba3MSi8O20-3xN2x (M=Mg, Ca, Sr, x=0.5) were investigated. Under excitation at about 330 nm, Ba 3MSi8O20-3xN2x:Ce3 (x=0.5) exhibits efficient blue emission centered at 400450 nm in the range of 350650 nm owing to the 5d→4f transition of Ce3. The emission band of Ce3 shifts to long wavelength by increasing the ionic size of M due to the modification of the crystal field, as well as the Ce3 concentrations due to the Stokes shift and energy transfer or reabsorption of Ce3 ions. Among the silicon-oxynitride phosphors of Ba 3MSi8O18.5N:Ce3, M=Sr 0.6Ca0.4 possesses the best thermal stability probably related to its high onset of the absorption edge of Ce3.
KW - Alkaline earth silicon-oxynitride
KW - Cerium
KW - Crystal structure
KW - Luminescence properties
KW - Thermal quenching
UR - http://www.scopus.com/inward/record.url?scp=79957459952&partnerID=8YFLogxK
U2 - 10.1016/j.jssc.2011.03.048
DO - 10.1016/j.jssc.2011.03.048
M3 - 文章
AN - SCOPUS:79957459952
SN - 0022-4596
VL - 184
SP - 1405
EP - 1414
JO - Journal of Solid State Chemistry
JF - Journal of Solid State Chemistry
IS - 6
ER -