简介:Eu2+andDy3+codoped(Ca,Sr)7(SiO3)6Cl2yellowphosphorsweresuccessfullysynthesizedbyself-fluxmethod.Thestructure,morphologyandphotoluminescencepropertieswereinvestigatedbyX-raydiffraction(XRD),scanningelectronmicroscopy(SEM)andphotoluminescencespectra.Theas-preparedphosphorshowedabroademissionspectrumcenteredat550nmforEu2+single-dopedphosphor,whilelocatedat548–544nmfortheEu2+,Dy3+codopedsamplesunderexcitationat380nmlight.TheemissionintensitywasgreatlyimprovedwhenDy3+wasdopedintothe(Ca,Sr)7(SiO3)6Cl2:Eu2+system.Thecomposition-optimizedsamplewith3mol.%ofDy3+andconstant10mol.%ofEu2+exhibiteda220%PLenhancementcomparedtothephosphorwith10mol.%Eu2+single-doped.Meanwhile,itwasfoundthatthequantumefficiencyofphosphornamely(Ca,Sr)7(SiO3)6Cl2:3mol.%Dy3+,10mol.%Eu2+couldgetupto24.6%.Thesynthesizedyellow-emitting(Ca,Sr)7(SiO3)6Cl2:Dy3+,Eu2+isapromisingcandidateashigh-efficiencyyellowphosphorforNUV-excitedwhiteLEDs.
简介:通过电化学分析与测试,研究B4C体积分数分别为20%、30%、40%的B4C/Al基复合材料及其基体合金(6061铝合金)在不同浓度及不同温度的硫酸溶液中的腐蚀行为。由动态极化曲线和阻抗谱得到相应的电化学参数,并利用阻抗分析软件对该复合材料和基体合金腐蚀过程的等效电路进行模拟,分析腐蚀机理,通过Arrhenius方程计算腐蚀过程中B4C/Al基复合材料与6061铝合金的反应活化能,并分析两者的焓变与熵变,对腐蚀前后2种材料界面的微观结构进行观察。结果表明:B4C/Al基复合材料在硫酸溶液中的腐蚀速率随B4C颗粒含量增加而增大,基体铝合金在硫酸中的耐腐蚀性能高于B4C/Al基复合材料。B4C/Al基复合材料和基体铝合金在硫酸中的腐蚀速率都随硫酸溶液浓度增加而增大;当溶液温度升高时,二者的腐蚀速率都快速增加。B4C/Al基复合材料和Al基体合金在硫酸溶液中的腐蚀都表现为明显的点蚀。铝基体材料在硫酸溶液中的反应活化能大于B4C/Al基复合材料,计算所得活化焓与活化熵的值均表明复合材料的腐蚀反应比基体合金更容易进行,因而遭受腐蚀更严重。
简介:通过溶胶-凝胶法结合光催化还原法制备掺Mo^6+附Ag的TiO2纳米颗粒,并在可见光下对酸性大红3R进行降解实验,研究其在可见光下的催化活性,并与纯TiO2、仅掺Mo^6+或仅附Ag的TiO2进行对比。进一步讨论在可见光照射下掺杂量、焙烧温度等因素对掺Mo^6+附Ag纳米TiO2降解性能的影响。结果表明:可见光下Ag/Mo6+/TiO2比纯TiO2、仅掺Mo6+或仅附Ag的TiO2显示出更高的活性,这是因为金属Mo6+的掺杂和贵金属银的沉积使二氧化钛的吸收带边发生红移,拓宽了可见光的响应范围;Ag/Mo^6+/TiO2催化剂的催化活性最高时的Mo^6+掺杂量为4.5%,银的附着量为2%。焙烧温度为500℃,这种掺Mo6+附Ag纳米TiO2对酸性大红3R的降解率可达87.6%.
简介:Aseriesofnovelbluelong-lastingphosphorescencephosphorsSr6Al18Si2O37:Eu2+,RE3+(RE3+=Ho3+,Gd3+,Dy3+andPr3+)werepreparedbytheconventionalhigh-temperaturesolid-statereactioninareductiveatmosphere.TheirpropertiesweresystematicallyinvestigatedutilizingX-raydiffraction(XRD),photoluminescence,phosphorescenceandthermoluminescence(TL)spectra.ThephosphorsemittedbluelightthatwasrelatedtotheemissionofEu2+dueto5d-4ftransition.Brightbluelong-lastingphosphorescence(LLP)couldbeobservedaftertheexcitationsourcewasswitchedoff.Fortheoptimizedsample,thebluelong-lastingphosphorescencecouldlastfornearly4hinthelightperceptionofthedark-adaptedhumaneye(0.32mcd/m2).TheeffectsofRE3+ionsonphosphorescencepropertiesofthephosphorswerestudied,andtheresultsshowedthattheco-dopingofRE3+ionsgreatlyenhancedtheintensityofthepeakaround315Kwhichwasrelatedtothelonglastingphosphorescenceofthephosphorsatroomtemperatureandconsequentlyimprovedtheperformanceofthebluephosphorescencesuchasintensityandpersistenttime.