简介:Inthepastfewdecades,manynovelnon-metaldopedZnOmaterialshavedevelopedhastyinterestduetotheiradaptablepropertiessuchaslowrecombinationrateandhighactivityunderthesolarlightexposure.Inthisarticle,wecompiledrecentresearchadvancesinnon-metal(S,N,C)dopedZnO,emphasizingontherelatedmechanismofcatalysisandtheeffectofnon-metalsonstructural,morphological,opticalandphotocatalyticcharacteristicsofZnO.ThisreviewwillenhancetheknowledgeabouttheadvancementinZnOandwillhelpinsynthesizingnewZnO-basedmaterialswithmodifiedstructuralandphotocatalyticproperties.
简介:Inpursuingexcellentsupercapacitorelectrodes,wedesignedaseriesofM0S2/C0S2compositesconsistingofflower-likedMoS2andoctahedron-shapedCoS2throughafacileone-stephydrothermalmethodandinvestigatedtheelectrochemicalperformanceofthesampleswithvarioushydrothermaltime.Duetothecouplingoftwometalspeciesandabigamountofwell-developedCoS2andMoS2,theresultsindicatedthattheMoS2/CoS2compositeselectrodesexhibitedthebestelectrochemicalperfor-mancewithalargespecificcapacitanceof490F/gat2mV/sor400F/gat10A/gamongallsamplesasthehydrothermaltimereached48h(MCS48).Furthermore,theretentionofMCS48is93.1%after10000cyclesat10A/g,whichmanifeststheexcellentcyclingstability.TheoutstandingelectrochemicalperformanceofMCS48indicatesthatitcouldbeaverypromisingandnovelenergystoragematerialforsupercapacitorsinthefuture.
简介:C/C-SiC复合材料是新一代高性能刹车材料,在高速列车、飞机和重型汽车等高能载制动领域具有广阔的应用前景。介绍了C/C-SiC复合材料的制备方法,分析了各种制备方法的优缺点。从材料的物相组成和使役条件两方面分析了C/C-SiC刹车材料摩擦磨损性能的影响因素,介绍了C/C-SiC刹车材料的优化设计,并对未来的研究方向、研究重点进行了展望。
简介:瞄准使用自然地存在的巨大的数量的一个协议为nanostructured浪费例如落叶,果皮和鸡蛋壳合成材料被建议。在这研究,把自然地存在的膜用作支持的一条绿合成线路为nanostructured和多孔的金属的合成被开发--或金属氧化物碳合成电影。不同金属性的离子(公司2+,Ni2+,Fe3+,Mn2+或Cu2+)能容易在Co/C的形成被吸附到鸡蛋膜和跟随的锻烧过程结果上,Ni/C,Fe3O4/C,MnO/C或Cu/Cu2O/CuO/C合成电影。电气化学的研究证明如此的合成电影将在精力领域里有潜在的应用程序。这个方法将为化学合成提供一个一般绿概念并且对全球持续未来有益。
简介:Tomeettheincreasingdemandforadvancedmaterialscapableofoperationover2000℃forfuturethermalprotectionsystemsapplication,C/C—ZrC—SiCcompositeswerefabricatedbyreactivemeltinfiltration(RMI)withZr,Simixedpowdersasrawmaterials.ThestructuralevolutionandformationmechanismoftheC/C—ZrC-SiCcompositeswerediscussed,andthemechanicalpropertyoftheas-preparedmaterialwasinvestigatedbycompressiontest.TheresultsshowedthataftertheRMIprocess,aspecialstructurewithZrC-SiCmulti-coatingasouterlayerandZrC-SiC-PyCceramicsasinnermatrixwasformed.ZrCandSiCrichareaswereformedinthecompositesandonthecoatingsurfaceduetotheformationofZr-SiintermetalliccompoundsintheRMIprocess.MechanicaltestsshowedthattheaveragecompressionstrengthoftheC/C-ZrC-SiCcompositeswas133.86MPa,andthecarbonfibersinthecompositeswerenotseriouslydamagedaftertheRMIprocess.
简介:作为富士胶片(FUJFILM)的经典数码相机——FinePixS602,是FinePix×6900的后继机型,以富士的第3代超级CCD组件为核心。无论是从图像品质上还是从操控性能上看.S602比其前辈都有很大的提高。FinePix×S602采用的第3代超级CCD组件由更新的CCD和更新的LSI组成,这使相机具有高达ISO1600的感光度,记录像素高达603万(2832×2128)。极高的感光度,使得拍摄者能够在不利的光线条件下进行拍摄或者抓拍快速移动的物体。FinePixS602采用的是富士FujinonSuperEBC6倍光学变焦镜