简介:采用溶胶-凝胶法在纯钛基体上制备Zn掺杂纳米TiO2薄膜(Zn-TiO2),研究不同热处理温度下Zn掺杂对纳米TiO2薄膜的物理性能、光阴极保护效果和光电化学性能的影响。研究表明,与未掺杂TiO2薄膜相比,Zn的加入提高了Zn-TiO2薄膜的光电化学响应,在300°C热处理后的薄膜使金属基体的电极电位下降最大,降低了897mV。SEM-EDS分析表明,Zn在掺杂薄膜中的分布不均匀,XRD结果显示Zn掺杂的薄膜比未掺杂的薄膜晶粒更细小。红外光谱结果表明,TiO2晶粒表面有Zn—O键生成。紫外光谱表明,Zn掺杂使Zn-TiO2吸收带边红移,扩大了TiO2的光响应范围。根据Mott-Shottky曲线可知,Zn-TiO2薄膜比纯TiO2薄膜的平带电位更负,载流子量更大。这说明在平带电位、载流子量和空间电荷层宽度的协同作用下,300°C热处理后的Zn-TiO2薄膜表现了最佳的光电化学响应。
简介:在之中无铅焊接材料,Sn-Ag-Cu合金有许多优点优异界面的性质和高度例如好弄湿的性质,爬抵抗。在这篇文章,组织和Sn-Ag-Cu材料的焊接性能被调查。二合金的表面形态学被实体镜的显微镜观察并且扫描电子显微镜(SEM)。化学宪法被X光检查精力散的光谱学(版本)检验。Sn-Ag-Cu的机械性质焊接Sn-Cu与那些相比系统地被评估焊接。结果证明Sn-Ag-Cu焊接基于不同焊接垫不同焊接性质。在接口的金属间化合的化合物(IMC)的厚度与老化时间增加。为镀金的垫,有很多IMC图,并且在焊接连接它能减少电的连接的可靠性。Sn-Ag-Cu焊接关节表演在传统的Sn-Cu上的一个优异机械性质焊接。酒窝减少和洞的数字增加因为Sn-Cu0.7合金和Sn-Ag3.0-Cu0.5合金的破裂表面有同类地分布式的许多小尺寸酒窝。
简介:ZrO2-SnO2compositenanoparticleswerepreparedbyheatingthehydrateprecursorssynthesizedbythechemicalco-precipitationreactionofZrOCl2andSnCl4.Theprecursorswereexaminedbydifferentialthermalanalysis(DTA)andthermogravimetricanalysis(TGA).ThecompositepowderwascharacterizedusingX-raydiffraction(XRD),transmissionelectronmicroscopy(TEM)anddesorptionisotherm(Barrett-Joyner-Halendamethod).Theaveragecrystalsizeofthenanoparticlerangesfrom15to30nmforthesamplecontaining5%-25%ZrO2(massfraction).MostoftheporesintheZrO2-SnO2nanoparficlesareabout10-20nmindiameter.Thecompositepowderispromisingforchemicalsensors.
简介:Zinctinoxide(ZTO)thinfilms,withzincacetateandtributyltinchlorideasrawmaterials,weredepositedonglasssubstratesbythemethodofmetalorganicchemicalvapordeposition(MOCVD).Thecrystallization,microstructureandopticalpropertieswereinvestigatedbyscanningelectronicmicroscope(SEM),X-raydiffraction(XRD)andultraviolet-visible(UV-Vis)spectrophotometer.TheresultsshowthatwiththeincreaseinSn/Znratio,thecrystalchangesfromwurtzitetorutilephase.Whentheratioreaches11:18,theintensityofZn_2SnO_4peaksappearstobethestrongestandtheopticalbandgapisabout3.27eV.Calculatedbytheenvelopemethod,thethicknessoftheZTOthinfilmsis713.24nm.MeasuredbyUV-Visspectrophotometer,thetransmittanceoftheZTOthinfilmsreachesupto80%inthewavelengthrangeof400-1000nmwhentheSn/Znratiois7:18.
简介:利用平衡合金法,采用扫描电镜-能谱仪和X射线衍射方法对Al-Fe-Sn三元系973和593K等温截面的相关系进行实验测定。实验结果表明:在此两个截面上均未检测到三元化合物;973K时液相中Fe的最大固溶度为1.6%(摩尔分数),而593K时Fe和Al在液相中的最大固溶度分别为0.6%和5.1%(摩尔分数);在973和593K等温截面上,Sn在Fe-Al化合物中的最大固溶度分别为4.2%和2.3%(摩尔分数);Fe-Al化合物均能与液相保持平衡。
简介:ThemicrostructureandtensilepropertiesofSn-9Znsolderunderdifferentcoolingandagingconditionwerestudied.Duringsolidification,thedistributionofZn-richphasesandgrainsizeinthemicrostructureofSn-9Znsolderweredecidedbythecoolingrate.TheZn-richphaseinSn-9Znsolderunderfurnacecooling,aircoolingandwatercoolingmediawasseparatelyexistedascoarsendendriticandneedlelikeshape,fineneedlelikeshapeandveryfinerod-likeshape,respectively.Afteraging,thecoarsendendriticwasbrokenandthecoarsenneedlelikeZn-richphasewaspartlychangedintofinedistributionofZn-richphaseforSn-9Znsolderwithfurnacecooling,andtherod-likeZnphaseintheSn-9ZnsolderunderwatercoolingwaschangedtoconglomeratedZnwithneedleshape.DuringtensiletestingonSn-9Znsolder,tensilestrengthandductilityreachedthebestwithwatercooling,butdecreasedwithagingeffect.Meanwhile,theductilityofsolderwithaircoolingandthestrengthofsolderwithfurnacecoolingincreasedwithaging.Thefracturemodewasductileandwasindependentofcoolingmediaandagingeffect.Thesizeanddepthofdimplesdecreasedfromwater,furnacetoaircooling.Afteraging,numberandsizeofdimplesincreasedonthesolderwithfurnacecoolingandaircooling.ThechangeonthesizeofdimplesfortheSn-9Znsolderunderdifferentcoolingconditionandwithagingeffectwasaccordancetothetensileproperties.
简介:Chemicalreductionmethodwasemployedtopreparenano-sizedSn2SbNialloycompositesusedasanodematerialforrechargeablelithiumionbatteries.Thisstrategywasadoptedtocombinethevirtuesofbothactive/inactiveandactive/activealloystofabricateaSn2SbNialloypowderwithtwoactivecomponentsandoneinactivecomponent.Thetwoactivecomponentscanrealizethehighcapacityfeatureofelectrodeandcanmakethevolumechangeofelectrodetakeplaceinastepwisemannerduetothedifferentlithiationpotentialsoftwoactivecomponents,leadingtoastablecyclingperformance.Sn2SbNialloyprovidesareversiblespecificcapacityover640mA·h/gwithanexcellentcyclicability.TheSn-Sb-Nialloycompositematerialshowstobeagoodcandidateanodematerialforthelithiumionbatteries.
简介:研究Sb元素含量对Sn-Bi系焊料性能的影响。通过差示扫描量热法研究Sn-Bi-Sb焊料的熔化行为。采用铺展实验研究焊料在Cu基板上的润湿性。测试Sn-Bi-Sb/Cu结合界面的力学性能。结果表明:三元合金中含有包共晶反应形成的共晶组织,随着Sb含量的增加,共晶组织增多;在加热速率为5℃/min的条件下,三元合金显示出更高的熔点和更宽的熔程;添加少量Sb对Sb-Bi系焊料的铺展率有影响;在焊料铺展过程中形成反应过渡层,反应过渡层中存在Sb元素而无Bi元素,过渡层厚度随着Sb元素含量的增加而增大。Sn-Bi-Sb焊料的剪切强度随着Sb元素含量的增加而升高。
简介:采用声化学法研究Zn掺杂对氧化镉纳米结构生长过程的影响.纳米颗粒的X射线衍射(XRD)谱表明,所制备的CdO样品为立方结构.场发射扫描电子显微镜(FESEM)图像显示,样品用Zn原子掺杂时,其形貌发生变化,粒度变小.利用室温光致发光(PL)和紫外?可见光谱(UV-Vis)分析技术研究样品的光学性质,结果表明,不同的发射带由不同的跃迁引起,CdO能带隙由于掺杂而增大.对纳米结构电学性质的研究表明,Zn掺杂导致光生载流子密度提高,从而使得纳米结构的导电性提高,光照射纳米结构所产生的光电流亦增大.根据本研究的结果,Zn掺杂可以改变CdO纳米结构的物理性质.
简介:采用简单的化学沉积结合KOH碱刻蚀的方法,在导电玻璃(FTO)上生长ZnO纳米棒阵列(ZnONRs)。用X射线衍射(XRD)、扫描电子显微镜(SEM)、电流-电压(I-V)曲线对所得样品的晶型、形貌及光电性能进行测试,结果表明:ZnONRs呈纤铅矿型;ZnONRs的形貌及光电性能与KOH的浓度及刻蚀时间密切相关,经0.1mol/LKOH刻蚀1h后可得到排列高度有序且分布均匀的ZnONRs;KOH刻蚀后的ZnONRs与未刻蚀前高密度的ZnONRs相比,其光学性能得到提高。0.1mol/LKOH刻蚀1h的ZnONRs作为太阳能电池的光阳极,其光电转换效率、短路电流、开路电压较未刻蚀的ZnONRs分别提高了0.71%、2.79mA和0.03V。
简介:Poroussiliconpillararray(PSPA)sampleswhichareidealsubstantialmaterialswithdominantelectronicandluminescencepropertieswerepreparedbysurfaceetchingmethod.ZnOnanorodswithorwithoutMndopinggrownuniformlyandalignedontoPSPAregardlessoflatticematchingshowvariousphotoluminescence(PL)properties.ThedopedMnionsinZnOnanorodsweredirectlyobservedbyX-rayphotoelectronspectroscopy(XPS),andZnOstructuresweredetectedbyX-raydiffraction(XRD).Asthedopingconcentrationincreases,XRDpeaksofZnOnanorodsshifttolowangle.TheinfluencesofdopingMnionsonluminescencepropertiesofZnOnanorodswereinvestigated.Exceptfortheultraviolet(UV)PLband,thebroadPLbandisobservedatvisibleregion.Thebandcouldbedividedintothreeseparatebands(orange,greenandred)byLorentziandeconvolution.TheintensityoforangePLbandfirstlyincreasesthendecreases,andthengetsthemaximumatthedopingMn-to-Znmolarratioof2.0:100.0whichisthemosteffectivedopingconcentration.ThegreenPLbandisattributedtozincvacancyofZnO,theorangePLbandtoMnionsrecombinationofitself,andtheredPLbandtooxygenvacancyofZnO,respectively.AstheMn-dopedZnOnanorodscouldemityellowgreenluminescenceexcitedbyUVradiation,anddopedMnionscouldimprovethecolorrenderingindexoftheluminescence,thenanorodscouldbeusedaspromisingwhite-lightemittersinthefuture.
简介:采用等温溶解饱和度法,在25~100°C下于密闭的聚四氟乙烯容器内测定ZnO在NaOH溶液中的溶解度。结果表明:在低浓度NaOH溶液中,平衡体系中只有ZnO一种固相存在,此时氧化锌的溶解度基本上不随温度改变。随着NaOH浓度增高,平衡固相由ZnO突然转变为NaZn(OH)3。这个突变点叫不变点。不变点的NaOH浓度随着温度的升高而增加,但在同一温度下NaZn(OH)3的溶解度随NaOH浓度增加而减少。在同Na2O浓度下,温度越高,NaZn(OH)3的溶解度越高。