[1] |
LI J G, LI X D, SUN X D, et al.Uniform colloidal spheres for (Y1-xGdx)2O3 (x=0-1): formation mechanism, compositional impacts, and physicochemical properties of the oxides.Chemistry of Materials, 2008, 20(6): 2274-2281.
|
[2] |
LI J G, LI X D, SUN X D, et al.Monodispersed colloidal spheres for uniform Y2O3: Eu3+ red-phosphor particles and greatly enhanced luminescence by simultaneous Gd3+ doping.Journal of Physical Chemistry C, 2008, 112(31): 11707-11716.
|
[3] |
LI J G, ZHU Q, LI X D, et al.Colloidal processing of Gd2O3: Eu3+ red phosphor monospheres of tunable sizes: solvent effects on precipitation kinetics and photoluminescence properties of the oxides.Acta Materialia, 2011, 59(9): 3688-3696.
|
[4] |
ZHU Q, LI J G, LI X D, et al.Monodisperse colloidal spheres for (Y, Eu)2O3 red-emitting phosphors: establishment of processing window and size-dependent luminescence behavior.Science and Technology of Advanced Materials, 2011, 12(5): 055001.
|
[5] |
KANG Y C, ROH H S, PARK S B.Preparation of Y2O3: Eu phosphor particles of filled morphology at high precursor concentrations by spray pyrolysis.Advanced Materials, 2000, 12(6): 451-453.
|
[6] |
KANG Y C, ROH H S, PARK S B.Sodium carbonate flux effects on the luminescence characteristics of (Y0.5Gd0.5)2O3: Eu phosphor particles prepared by spray pyrolysis.Journal of the American Ceramic Society, 2001, 84(2): 447-449.
|
[7] |
WANG H, YU M, LIN C K, et al.Synthesis and luminescence properties of monodispersed spherical Y2O3: Eu3+@SiO2 particles with core-shell structure.Journal of Physical Chemistry C, 2007, 111(30): 11223-11230.
|
[8] |
MATIJEVIC E, HSU W P.Preparation and properties of monodispersed colloidal particles of lanthanide compounds: I. Gadolinium, europium, terbium, samarium, and cerium (III).Journal of Colloid and Interface Science, 1987, 118(2): 506-523.
|
[9] |
AIKEN B, HSU W P, MATIJEVIC E.Preparation and properties of monodispersed colloidal particles of lanthanide compounds: III, Yttrium (III) and mixed Yttrium(III)/Cerium(III) systems.Journal of the American Ceramic Society, 1988, 71(10): 845-853.
|
[10] |
SORDELET D, AKINC M.Preparation of spherical, monosized Y2O3 precursor particles.Journal of Colloid and Interface Science, 1988, 122(1): 47-59.
|
[11] |
ZHU Q, XIONG M, LI J G, et al.(Y, Tb, Eu)2O3 monospheres for highly fluorescent films and transparent hybrid films of color tunable emission.RSC Advances, 2015, 5: 36122-36128.
|
[12] |
ZONG L, XU P F, DING Y, et al.Y2O3: Yb3+/Er3+ hollow spheres with controlled inner structures and enhanced upconverted photoluminescence.Small, 2015, 11(23): 2768-2733.
|
[13] |
MIAO H, JI R, HU X Y, et al.Y2O3: Eu3+/Tb3+ spherical particles based anti-reflection and wavelength conversion bi-functional films: synthesis and application to solar cells.Journal of Alloys and Compounds, 2015, 629: 74-79.
|
[14] |
LV R, YANG P, HE F, et al.Hollow structure Y2O3: Yb/Er-CuxS nanospheres with controllable size for simultaneous chemo/photothermal therapy and bioimaging.Chemistry of Materials, 2015, 27(2): 483-496.
|
[15] |
ZHU Q, LI J G, MA R, et al.Well-defined crystallites autoclaved from the nitrate/NH4OH reaction systemas the precursor for (Y, Eu)2O3 red phosphor: crystallization mechanism, phase and morphology control, and luminescent property.Journal of Solid State Chemistry, 2012, 192: 229-237.
|
[16] |
ZHU Q, LI J G, LI X D, et al.Morphology-dependent crystallization and luminescence behavior of (Y, Eu)2O3red phosphors.Acta Materialia, 2009, 57(20): 5975-5985.
|
[17] |
PENG H, SONG H, CHEN B, et al.Temperature dependence of luminescent spectra and dynamics in nanocrystalline Y2O3: Eu3+.Journal of Chemical Physics, 2003, 118(7): 3277-3282.
|
[18] |
CHRISTENSEN H P, GABBE D R, JENSSEN H P.Fluorescence lifetimes for neodymium-doped yttrium aluminum garret and yttrium-oxide powders.Physical Review B, 1982, 25(3): 1467-1473.
|