原位透射电子显微学(in-situTEM)是指直接在原子层次观察样品在力、那些热、那些电、磁作用下以及化学反应过程中的微结构演化及进行表征的过程,近年来成为材料研究的热门领域。 看起(d)Zn0.2Co0.8O2上的L2中间体中的O(2p)和Co(3d)轨道的pDOS。光丽的路相关文献推荐:Wang,L.Gan,Q.Zhang,V.Reddu,Y.Peng,Z.Liu,X.Xia,C.Wang,X.Wang*,Awater-solubleCucomplexasmolecularcatalystforelectrocatalyticCO2reductionongraphene-basedelectrodes,Adv.EnergyMater.2019,9,1803151.Dou,J.Song,S.Xi,Y.Du,J.Wang,Z.F.Huang,Z.J.Xu,X.Wang*,BoostingelectrochemicalCO2reductiononMetal-OrganicFrameworksvialiganddoping.Angew.Chem.Int.Ed.,2019,131,4081-4085.Wang,L.Gan,W.Zhang,Y.Peng,H.Yu,Q.Yan,X.Xia,X.Wang*,InsituformationofmolecularNi-Feactivesitesonheteroatomsdopedgrapheneasheterogeneouselectrocatalysttowardoxygenevolution,ScienceAdvances,2018,4,eaap7970.Zhang,L.Sun,J.M.VianneyNsanzimana,X.Wang*,Lithiation/delithiationsynthesisoffewlayersilicenenanosheetsforrechargeableLi-O2batteries,AdvancedMaterials,2018,30,1705523.Wang,X.Ge,Z.Liu,L.T.,Y.Yan,W.Xiao,X.Wang*,Heterogeneouselectrocatalystwithmolecularcobaltionsservingasthecenterofactivesites,JournaloftheAmericanChemicalSociety,2017,139(5),1878.-F.Huang,J.Wang,Y.Peng,C.-Y.Jung,A.Fisher,X.Wang*,Designofefficientbifunctionaloxygenreduction/evolutionelectrocatalyst:recentadvancesandperspectives,Adv.EnergyMater.,2017,7,1700544.S.Xie,B.Y.Xia,Y.W.Li,Y.Yan,Y.H.Yang,Q.Sun,S.H.Chan,A.Fisher,X.Wang*,Aminoacidfunctionalizedcopperelectrodesfortheenhancedselectiveelectroreductionofcarbondioxidetowardshydrocarbons,EnergyEnviron.Sci.,2016,9,1687-1695.YXia,Y.Yan,N.Li,H.B.Wu,X.W.Lou*,X.Wang*,Ametal-organic-framework-derivedbi-functionaloxygenelectrocatalyst,NatureEnergy,2016,1,15006.本文由张金洋编译整理。 鲜亮【图文导读】图1氧的非键态中氧hole的形成(a)锌取代的MO2模型。然而目前导致LOM的化学和结构来源尚未研究清楚,照片阻碍了OER电催化剂的设计。(b,后都c)SEM图(b)和TEM图以及Zn0.2Co0.8OOH的STEM-EELS元素分布图(c)。 (f,那些g)Zn0.2Co0.8OOH和CoOOH的Co(2p)XPS谱图(f)和O(1s)XPS谱图(g)。基于LOM机理的催化剂可以表现出更好的催化性能,看起最近已经在钙钛矿材料中得到验证。 晶格氧氧化机理(LOM),光丽的路涉及直接O-O耦合,能够绕过这一限制。 相关文献推荐:鲜亮Shiftingoxygenchargetowardsoctahedralmetal:awaytopromotewateroxidationoncobaltspineloxides,AngewandteChemieInternationalEdition,2019,DOI:10.1002/anie.201902114Masteringsurfacereconstructionofmetastablespineloxidesforbetterwateroxidation,AdvancedMaterials,2019,1807898RecommendedPracticesandBenchmarkActivityforHydrogenandOxygenElectrocatalysisinWaterSplittingandFuelCells,AdvancedMaterials,2019,1806296Metal-oxygenHybridizationDeterminedActivityinSpinel-basedOxygenEvolutionCatalysts:ACaseStudyofZnFe2-xCrxO4,ChemistryofMaterials,2018,DOI:10.1021/acs.chemmater.8b02871TheComprehensiveUnderstandingof10mAcm−2geoasanEvaluationParameterforElectrochemicalWaterSplitting,SmallMethods,2018,DOI:10.1002/smtd.201800168(Editorial)DegreeofGeometricTiltingDeterminestheActivityofFeO6OctahedraforWaterOxidation,ChemistryofMaterials,2018,30,4313-4320ImpactofSurfaceAreainEvaluationofCatalystActivity,Joule,2018,2,1024-1027,(Acommentaryarticle)EnlargedCo-Ocovalencyinoctahedralsitesleadingtohighlyefficientspineloxidesforoxygenevolutionreaction,AdvancedMaterials,2018,30,1802912RevealingtheDominantChemistryforOxygenReductionReactiononSmallOxideNanoparticles,ACSCatalysis,2018,8,673-677FromTwo-PhasetoThree-Phase:TheNewElectrochemicalInterfacebyOxideElectrocatalysts,Nano-MicroLetters,2017,DOI:10.1007/s40820-017-0161-5CationsinOctahedralSites:ADescriptorforOxygenElectrocatalysisonTransitionMetalSpinels,AdvancedMaterials,2017,29,1606800南洋理工大学王昕课题组研究兴趣主要集中于电催化剂设计在燃料电池、鲜亮CO2还原、电解水以及其他小分子氧化中的应用。只要猫咪干爽,照片一定不会长。 后都另外还要对家中猫咪接触过的物品都清洁消毒一遍。猫咪生活环境要干燥通风,那些潮湿是发病的一个重要诱因。 鸡蛋黄可以生吃,看起蛋清必须吃熟的3、看起如果是轻微的猫癣可以暂时不用药物,用的话可以用聚维酮碘擦患处,如果比较严重了,还有很多治疗真菌的药物比如皮特芬也可以擦患处,需要带项圈,防止舔舐。猫藓的传染性很强,光丽的路不仅自身蔓延快,也会传染其他同伴,甚至是人。 |
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