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red phosphor
    A novel red phosphor α-Gd2(MoO4)3∶Eu was synthesized by conventional solid state reaction method with the starting materials: Gd2O3, MoO3 and Eu2O3. The effects of flux and Eu concentration on the crystal structure, morphology and luminescent properties of the phosphors were investigated.
    以Gd2O3,MoO3,Eu2O3为原料,采用传统的高温固相反应方法制备了一种新的白光LED用红色荧光粉材料α相Gd2(MoO4)3∶Eu。
    Y2O3∶Eu red phosphor was prepared by co-precipitation-molten salt baking method,and the effects of complexing agents(EDTA,citric acid and ammonia,or starch),precipitation temperature,and molten salts were investigated on the luminescent properties,particle size and morphology.
    采用共沉淀-熔盐焙烧法制备了Y2O3∶Eu红色荧光粉,研究分析了EDTA、柠檬酸+氨水、淀粉等3类络合剂、沉淀温度及熔盐对其发光性能、粒度及形貌等的影响。
    Red phosphor Al2O3:Eu was prepared by co-precipitation method using mixture of ammonium hydrogen carbonate and ammonium water as complex precipitator.
    用碳酸氢铵和氨水混合溶液作为复合沉淀剂制备了Al2O3:Eu红色荧光粉体。
    Study on Technique of Preparation Non-Ball Grindery Red Phosphor Powder Y_2O_3:Eu~(3+) with Oxalic Acid Precipitation Method
    草酸沉淀法制备不球磨红色荧光粉Y_2O_3:Eu~(3+)工艺研究
    Influence of Sr/Ca Ratio on Red Phosphor Ca_(1-x)Sr_xS∶Eu~(2+)
    Sr/Ca比变化对红色荧光粉Ca_(1-x)Sr_xS:Eu~(2+)的影响
    Luminescent Properties of Small-sized Red Phosphor Y_2O_3∶Eu~(3+) Synthesized by Oxalic Acid Precipitation Method
    草酸沉淀法制备细颗粒红色荧光粉Y_2O_3∶Eu~(3+)的发光特性
    Synthesis and luminescent properties of Ba_(0.5)Mg_yAl_(12x)Mn_xO_(19) red phosphor prepared by Sol-Gel method
    Ba_(0.5)Mg_yAl_(12-x)Mn_xO_(19)红色荧光粉的合成工艺及发光性能研究
    Luminescence and Optimization of Red Phosphor Ca_4(La_(1-x-y)Gd_xY_y)_(1-n)O(BO_3)_3∶nEu~(3+)
    红色荧光粉Ca_4(La_(1-x-y)Gd_xY_y)_(1-n)O(BO_3)_3∶nEu~(3+)的发光和优化
    Structure and Spectrum Properties of Small-sized Red Phosphor Y_2O_3∶Eu~(3+)
    细颗粒红色荧光粉Y_2O_3:Eu~(3+)的结构和光谱性质研究
    Photoluminescent and Electroluminescent Characteristics of ZnGa_2O_4∶Cr~(3+) Red Phosphor
    ZnGa_2O_4∶Cr~(3+)红色荧光粉的光致及电致发光性能
    A Novel Red Phosphor for White LED SrMoO_4:Eu~(3+)
    一种新型的白光LED用红色荧光粉SrMoO_4:Eu~(3+)
    Indirect preparation and luminescent properties of red phosphor Y_2O_2S:Eu~(3+)
    纳米Y_2O_2S:Eu~(3+)红色荧光粉的间接法制备及发光性质
    LUMINESCENCE PROPERTIES OF RED PHOSPHOR Al2O3:Eu PREPARED BY CO-PRECIPITATION METHOD
    共沉淀法制备Al_2O_3:Eu红色荧光粉及其发光性能研究
    In order to meet the requirement of display technology development, we prepared the red phosphor (Y,Gd)(P,V)O4 activated with Eu3+.
    本论文正是适应显示技术发展的需求,通过高温固相反应的方法制备了Eu~(3+)激活的(Y,Gd)(P,V)O_4红色荧光粉
    A novel stable red phosphor SrMoO_4:Eu~(3+) was prepared by solid state method. Theproperties of this phosphor and the other red phosphor CaMoO_4:Eu~(3+) were improved usingcharge compensation.
    本文利用高温固相反应法制备了一种性能稳定的红色荧光粉SrMoO_4:Eu~(3+),并利用电荷补偿对所制备的红色荧光粉以及另一种红色荧光粉CaMoO_4:Eu~(3+)的发光性能进行了改进,得到了发光强度更高的红色荧光粉
    A red phosphor SrMoO_4:Eu~ 3+ has been fabricated by Solid State method in air and its luminescent properties have been investigated.
    采用固相法合成了红色荧光粉SrMoO4:Eu3+并对它的发光性质进行了研究。
    Y_2O_3∶Eu red phosphor for FED application was prepared by high temperature solid-state reaction. The In_2O_3 coating by precipitation method to the phosphor was applied to promote the conductivity of particles.
    采用高温固相法合成了FED用Y2O3∶Eu红色荧光粉,为提高其导电性,采用表面成膜包覆法对其进行了In2O3包膜研究。
    The powder of Ca1-xSrxS:Eu2+ was synthesized using combustion with ignition temperatures of 500—550 ℃ by oxida-tion-reduction reaction of the mixed metal nitrate and sulfourea. The products of Ca1-xSrx S:Eu2+ are an efficiency red phosphor us-ing in white light emitting diodes.
    利用硝酸盐和含硫燃烧剂硫脲的氧化还原反应,通过燃烧法在较低的起始温度(500~550℃)合成了白光发光二级管用红色荧光粉Ca1-xSrxS:Eu2+,研究了其发光性质。
    Study on New Efficient Red Phosphor for Plasma Display Pannel
    新型高效等离子体平板显示(PDP)用红色荧光粉的研究
    The experiment of Urea-sol method for synthesizing global, well-proportioned ,superfine-particle Y203: Eu red phosphor whose particle-diameter is 100? 00nm is discussed in detail by this paper. And the experiment of synthesizing Y203: Tb green phosphor whose particle-diameter is 125?
    本论文详细叙述了用尿素溶胶法合成球形的、颗粒均匀的,粒径为100—200nm的超细Y_2O_3:Eu红色荧光粉的实验过程,并在目前可知的国内外文献范围内首次报道用尿素溶胶法成功合成了粒径为125—250nm,球形均匀的的超细Y_2O_3:Tb绿色荧光粉的实验过程。
 

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