nav emailalert searchbtn searchbox tablepage yinyongbenwen piczone journalimg journalInfo journalinfonormal searchdiv searchzone qikanlogo popupnotification paper paperNew
2011, 08, v.39;No.269 1229-1234
共沉淀法制备细粒径BaMgAl10O17:Eu2+荧光粉及合成机理
基金项目(Foundation): 国家高技术研究发展计划(2009AA03A1A5);; 高等学校科技创新工程重大项目培育资金(707029)资助项目
邮箱(Email):
DOI: 10.14062/j.issn.0454-5648.2011.08.021
摘要:

采用化学共沉淀法合成出BaMgAl10O17:Eu2+(BAM)蓝色荧光粉,研究了共沉淀产物在高温煅烧中的物相转变和晶粒生长过程,探讨了共沉淀法获得细粒径铝酸盐荧光粉的机理。研究发现,该物相转变过程和传统的高温固相法有很大区别,整个过程中未出现α-Al2O3相和含Mg的结晶相,BaMgAl10O17相由BaAl2O4相和γ-Al2O3相直接反应生成。BaMgAl10O17相的生成温度也比高温固相法低约200℃。电子衍射分析结果表明:该方法合成的BAM颗粒为六角片状的单晶体,晶粒尺寸为1~2μm,厚度100~200 nm,其基面为(0001)面,棱面为(1010)面。在147 nm真空紫外光激发下其发射主峰为450 nm,发光强度和光谱特性与高温固相法制备的荧光粉相近。该BAM荧光粉能够满足未来高清晰度平板显示的要求。

Abstract:

A BaMgAl10O17:Eu2+(BAM) phosphor was synthesized by a chemical co-precipitation method.The phase transitions and the crystal particle growing process of the precipitate mixture during calcining process were investigated.The synthesis mechanism was discussed.The phase transition process differed from that by the high-temperature solid state reaction method.Al2O3 phase and the phases with Mg did not appear during the synthesis process.The BaMgAl10O17 phase was formed from a reaction between BaAl2O4 phase and γ-Al2O3 phase.The synthesis temperature of BaMgAl10O17 phase was lowered by 200 ℃,compared to that in the high-temperature solid state reaction method.The electron diffraction results reveal that the BAM particle prepared by the co-precipitation method is a single crystal with the hexagonal flaky shape,the basal plane is(0001),and the edge plane is and the crystallite size is about 1–2 μm,the thickness is about 100–200 nm.The emission peak of the BAM phosphor excited by 147 nm was 450 nm.The luminescence intensity and the spectral properties of the BAM phosphor were similar to those of the phosphor pre-pared by the high-temperature solid state method.The BAM phosphor material is promising for the future high-definition flat display.

参考文献

[1]CHEN Z,YAN Y W,LIU J M,et al.Microstructure and luminescenceof surface-coated nano-BaMgAl10O17:Eu2+blue phosphor[J].J AlloysCompd,2009,478:679–683.

[2]TUROS-MATYSIAK R,GRINBERG M,WANG J W,et al.Lumines-cence of BAM under high pressure:the Eu2+sites[J].J Lumin,2007,122/123:107–109.

[3]JEONG Y K,KIM H J,KIM H G,et al.Luminescent properties ofBaMgAl10O17:Eu2+blue phosphor grown with SiO2 using atomic layerdeposition[J].Curr Appl Phys,2009,9:S249–S251.

[4]ZHAN H Z,YU H W,XIAO X L.Effects of Si4+and B3+doping on thephotoluminescence of BaMgAl10O17:Eu2+phosphor under UV andVUV excitation[J].J Alloys Compd,2009,478:801–804.

[5]BOEUF J P.Plasma display panels physics,recent developments andkey issues[J].J Phys D:Appl Phys,2003,36:R53–R79.

[6]BECHTEL H,JUSTEL T,GLASER H,et al.Phosphors for plasmadisplay panels:demands and achieved performance[J].J Soc Inf Dis-play,2002,10:63–67.

[7]ZHU P F,D I W H,ZHU Q R,et al.Luminescent properties and ther-mal stability of BaMgAl10O17:Eu2+synthesized by sol–gel route[J].JAlloys Compd,2008,454:245–249.

[8]CHEN Z,YAN Y W,LIU J M,et al.Microwave induced solutioncombustion synthesis of nano-sized phosphors[J].J Alloys Compd,2009,473:L13–L16.

[9]MAHAKHODE J G,DHOBLE S J,JOSH C P,et al.Combustionsynthesis of phosphors for plasma display panels[J].J Alloys Compd,2007,438:293–297.

[10]LEE S H,KOO H Y,JUNG D S,et al.Fine-sized BaMgAl10O17:Eu2+phosphor powders prepared by spray pyrolysis from the spray solutionwith BaF2 flux[J].Ceram Int,2009,35:2651–2657.

[11]CHEN L T,SUN I L,HWANG C S,et al.Luminescence properties ofBAM phosphor synthesized by TEA coprecipitation method[J].J Lu-min,2006,118:293–300.

[12]CHEN Z,YAN Y W.Morphology control and VUV photoluminescencecharacteristics of BaMgAl10O17:Eu2+phosphors[J].Physica B,2007,392:1–6.

[13]董岩,蒋建清,刘刚,等.作为荧光粉原料的氧化铝的制备及其形貌控制[J].硅酸盐学报,2004,32(4):393–397.DONG Yan,JIANG Jianqing,LIU Gang,et al.J Chin Ceram Soc(inChinese),2004,32(4):393–397.

[14]董岩,蒋建清,于金,等.小粒径α-Al2O3粉体的表征及其晶体生长机制研究[J].硅酸盐学报,2005,33(11):1344–1347.DONG Yan,JIANG Jianqing,YU Jin,et al.J Chin Ceram Soc(inChinese),2005,33(11):1344–1347.

[15]董岩,蒋建清,顾维杰,等.小粒径BaMgAl10O17:Eu2+荧光粉的合成机理[J].硅酸盐学报,2010,38(12):2225–2229.DONG Yan,JIANG Jianqing,GU Weijie,et al.J Chin Ceram Soc(inChinese),2010,38(12):2225–2229.

[16]董岩,邵起越,韩学林,等.超细铝酸盐荧光粉的制备方法[P].CNPatent,200910035382.0.2009–09–23.DONG Yan,SHAO Qiyue,HAN Xuelin,et al.Preparation method ofsuperfine aluminate phosphors(in Chinese).CN Patent,200910035-382.0.2009–09–23.

[17]PIKE V,PATRAW S,DIAZ A L,et al.Defect chemistry and VUVoptical properties of the BaMgAl10O17:Eu2+–Ba0.75Al11O17.25:Eu2+solidsolution[J].J Solid State Chem,2003,173:359–366.

[18]KIM D K,HWANG S H,KIM I G,et al.Low-temperature synthesis offine BaMgAl10O17:Eu2+phosphor based on the solubility isotherms[J].J Solid State Chem,2005,178:1414–1421.

基本信息:

DOI:10.14062/j.issn.0454-5648.2011.08.021

中图分类号:TQ422

引用信息:

[1]董岩,吴直森,陈蓉,等.共沉淀法制备细粒径BaMgAl_(10)O_(17):Eu~(2+)荧光粉及合成机理[J].硅酸盐学报,2011,39(08):1229-1234.DOI:10.14062/j.issn.0454-5648.2011.08.021.

基金信息:

国家高技术研究发展计划(2009AA03A1A5);; 高等学校科技创新工程重大项目培育资金(707029)资助项目

发布时间:

2011-07-26

出版时间:

2011-07-26

网络发布时间:

2011-07-26

检 索 高级检索

引用

GB/T 7714-2015 格式引文
MLA格式引文
APA格式引文