简介:采用高分子网络凝胶法合成Sm^3+掺杂YPO4纳米荧光材料,利用X射线衍射(XRD)、透射电镜(TEM)、傅里叶红外光谱(FT-IR)和荧光光谱等对合成产物的晶体结构、颗粒尺寸、形貌和光学性能进行分析与测试,并研究Sm^3+掺杂浓度(n(Sm)/n(Y+Sm))的影响。结果表明,采用高分子网络凝胶法合成的YPO4:Sm^3+为单一的四方晶系磷钇矿结构的YPO4晶体,颗粒尺寸约为20nm。其激发光谱在405nm处有一最强激发带,属于Sm^3+的6H5/2-4K11/2跃迁,发射光谱在603nm^处有一最强峰,属于Sm3+的4G5/2-6H7/2跃迁。激发和发射光谱测试结果表明,Sm3+掺杂YPO4荧光材料可以被405nm波长的光有效地激发,发射出强烈的Sm3+特征橙红色光。当Sm3+掺杂浓度高于2%时观察到浓度猝灭现象,浓度猝灭机理为电多极-电多极相互作用。
简介:YPO_4phosphorssingle-dopedwithSb~(3+)orGd~(3+)andco-dopedwithSb~(3+)andGd~(3+)werepreparedbyasolid-statereactionmethod.Thephasepurity,morphology,photoluminescenceexcitationandemissionpropertiesofthepreparedphosphorswereinvestigated.TheresultsshowedthatSb~(3+)couldsensitizeGd~(3+)intheco-dopedphosphorswhichmadethephosphorsexcitablebyshort-waveultraviolet(UV)atawavelengthbetween220and260nm.Under253.7nmexcitation,theco-dopedphosphorsY_(1–x–y)PO_4:Sb~(3+)x,Gd~(3+)yshowedstrongemissionofGd~(3+)atawavelengthof312nmwhoseintensitychangedwiththedopingconcentrationsofGd~(3+)andSb~(3+).TheoptimizedY_(0.77)PO_4:Sb~(3+)0.07,Gd~(3+)0.16phosphorshowedanintensitycomparabletocommercialLaPO_4:Cephosphor(UVB-315),makingitapotentialcandidateformercurylow-pressuredischargenarrow-bandUV-Bemittinglamps.
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简介:РоссийскийспортвгодыВеликойОтечественнойвойныИзвестныйнамкомплексГТО1нетолькопомогалкрепитьобороннуюмощьСССР,ноиоткрывалфеноменальныеспортивныеталанты.
简介:Dibromobiphenylreactedwithcynomethylanioninammoniaunderirradiationtoformnucleophilicbis-substitutedproductinhighyieldwithoutsubstantialmonosubstitutedproduct.Quantumyieldsfortheformationsofbis-andmonosubstitutedproductswerefoundtobe85.6and2.3×10-6respectively,whilethecorrespondingpseudo-first-orderrateswere6.9×10-3and5.2×10-10mol.L-1.S-1.Blockupthepossibleelectrontransferof4-brome-4’-cyanomethylbiphenylylradicalanionto4-cyanometbyl-biphenylylradicalandbromineion.