简介:大音阶的第五音胶化旋转涂层在Pt/Ti/SiO2/Sisubstrate上准备的Pb(Zr0.4Ti0.6)O-3电影作为最高的电极与磅或Ru被用于铁电体电容器。为thePt/PZT/Pt和Ru/PZT/Pt铁电体电容器,尽管与一样的铁电体他,不同最高的电极材料招致PZT电容器的不同性质例如疲劳,漏,残余、浸透的极化,除了PZTfilm的类似的水晶取向。在(10)10交换周期以后,Ru/PZT/Pt和Pt/PZT/Ptcapacitors的残余的极化分别地减少到70%和84%。在(8)10交换周期以后,后者的漏水流密度在积极偏爱显然增加,与前者相比。为最高的电极的Differentmaterials在PZT/top电极接口带不同条件。在PZT/electrode接口和在到充电注射的PZT/electrode接口的电极材料的氧化物的影响的氧空缺集中的Theinfluence能作为最高的电极与磅或Ru解释PZT电容器的性质的差别。
简介:ThemetaloxidesCuMnCeandCeYwashcoatsoncordieritewerepreparedusinganimpregnationmethod,andthenusedassupportfortheactivePtcomponenttopreparethePt/CuMnCeandPt/CeYmonolithiccatalystsforthedeepoxidationofVOCs.IncomparisonwiththePt/CeY,CuMnCe,andCeYmonolithiccatalysts,thePt/CuMnCemonolithiccatalystshowsanexcellentperformancefortoluene,ethylacetate,andn-hexaneoxidationandtheT90%islowto216,200and260℃,respectively.TheactivecomponentsPt/PtOandCuMnCeresultinabettersynergeticinteraction,whichpromotethecatalystreducibility,increasetheoxygenmobility,andenhancetheadsorptionandactivationoforganicmolecules.
简介:Electrolysisofammoniainalkalineelectrolytesolutionwasappliedfortheproductionofhydrogen.BothPt-loadedNifoamandPt-IrloadedNifoamelectrodeswerepreparedbyelectrodepositionandservedasanodeandcathodeinammoniaelectrolyticcell,respectively.TheelectrochemicalbehaviorsofammoniainKOHsolutionwereindividuallyinvestigatedviacyclicvoltammetryonthreeelectrodes,i.e.bareNifoamelectrode,Pt-loadedNifoamelectrodeandPt-IrloadedNifoamelectrode.ThemorphologyandcompositionofthepreparedNifoamelectrodewereanalyzedbyscanningelectronmicroscopy(SEM)andX-raydiffraction(XRD).Effectsoftheconcentrationofelectrolytesolutionandtemperatureofelectrolyticcellontheelectrolysisreactionwereexaminedinordertoenhancetheefficiencyofammoniaelectrolysis.Thecompetitionofammoniaelectrolysisandwaterelectrolysisinthesamealkalinesolutionwasfirstlyproposedtoexplainthechangesofcellvoltagewiththeelectrolysisproceeding.Atvaryingcurrentdensities,differentcellvoltagescouldbeobtainedfromgalvanostaticcurves.Thelowcellvoltageof0.58V,whichislessthanthepracticalelectrolysisvoltageofwater(1.6V),canbeobtainedatacurrentdensityof2.5mA/cm2.Basedonsomeexperimentalparameters,suchastheappliedcurrent,theresultingcellvoltageandoutputofhydrogengas,thepowerconsumptionpergramofH2producedcanbeestimated.