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周鸿祎的前半生:3Q大战、3721、雅虎中国的幕后故事
发布时间:2025-07-03 02:32:32  来源:阳光生态旅游有限公司

他强调:周鸿战一方树正是通过创新和环保理念,打破了传统格局,满足了消费者对高品质生活的追求。

祎的排在第四的是贡献了8篇的Advanced Materials。香港科技大学的唐本忠院士课题组因为贡献了的四篇文章,前半而成为入选文章数量最多的课题组。

周鸿祎的前半生:3Q大战、3721、雅虎中国的幕后故事

虎中这100篇文章基本上都属于主流期刊。国的故事2011年发表在Chem.Soc. Rev.上的Aggregation-Induced Emission以及2015年发表在Chem.Rev.上的Aggregation-InducedEmission:TogetherWeShine,UnitedWeSoar!。6.文章列表1.ExploringHigh-PressureLithiumBerylliumHydrides:ANewChemicalPerspective2.Dye-SensitizedSolarCells3.Areviewonpolymernanofibersbyelectrospinningandtheirapplicationsinnanocomposites4.Ametal-freepolymericphotocatalystforhydrogenproductionfromwaterundervisiblelight5.Piezoelectricnanogeneratorsbasedonzincoxidenanowirearrays6.Areviewofelectrodematerialsforelectrochemicalsupercapacitors7.Semiconductor-basedPhotocatalyticHydrogenGeneration8.TiO2photocatalysisandrelatedsurfacephenomena9.Achemicallyfunctionalizablenanoporousmaterial[Cu-3(TMA)(2)(H2O)(3)](n)10.Multiwfn:Amultifunctionalwavefunctionanalyzer11.LuminescentFunctionalMetal-OrganicFrameworks12.TopologicalinsulatorsinBi2Se3,Bi2Te3andSb2Te3withasingleDiracconeonthesurface13.Blackphosphorusfield-effecttransistors14.Enhancedpower-conversionefficiencyinpolymersolarcellsusinganinverteddevicestructure15.Frictionstirweldingandprocessing16.High-thermoelectricperformanceofnanostructuredbismuthantimonytelluridebulkalloys17.Aggregation-inducedemissionof1-methyl-1,2,3,4,5-pentaphenylsilole18.Aggregation-inducedemission19.Super-hydrophobicsurfaces:Fromnaturaltoartificial20.Exceptionalchemicalandthermalstabilityofzeoliticimidazolateframeworks21.AnataseTiO2singlecrystalswithalargepercentageofreactivefacets22.AdvancedMaterialsforEnergyStorage23.Nitrogen-DopedGrapheneasEfficientMetal-FreeElectrocatalystforOxygenReductioninFuelCells24.Flexiblegraphenefilmsviathefiltrationofwater-solublenoncovalentfunctionalizedgraphenesheets25.Areviewandrecentdevelopmentsinphotocatalyticwater-splittingusingTiO2forhydrogenproduction26.ALargeandPersistentCarbonSinkintheWorldsForests27.Multiferroicmagnetoelectriccomposites:Historicalperspective,status,andfuturedirections28.Three-dimensionalflexibleandconductiveinterconnectedgraphenenetworksgrownbychemicalvapourdeposition29.Evaluationofsolution-processedreducedgrapheneoxidefilmsastransparentconductors30.Synthesisoftetrahexahedralplatinumnanocrystalswithhigh-indexfacetsandhighelectro-oxidationactivity31.Observationofalarge-gaptopological-insulatorclasswithasingleDiracconeonthesurface32.Ageneralstrategyfornanocrystalsynthesis33.Thereductionofgrapheneoxide34.Locallyresonantsonicmaterials35.Aggregation-inducedemission:phenomenon,mechanismandapplications36.ExperimentalRealizationofaThree-DimensionalTopologicalInsulator,Bi2Te337.Graphene-LikeTwo-DimensionalMaterials38.Long-distancequantumcommunicationwithatomicensemblesandlinearoptics39.TopologicalsemimetalandFermi-arcsurfacestatesintheelectronicstructureofpyrochloreiridates40.Self-AssembledGrapheneHydrogelviaaOne-StepHydrothermalProcess41.Bulkmetallicglasses42.Abinitiomodelingofquantumtransportpropertiesofmolecularelectronicdevices43.Shell-isolatednanoparticle-enhancedRamanspectroscopy44.Aggregationandmorphologycontrolenablesmultiplecasesofhigh-efficiencypolymersolarcells45.SynthesisofN-DopedGraphenebyChemicalVaporDepositionandItsElectricalProperties46.MolecularDesignofPhotovoltaicMaterialsforPolymerSolarCells:TowardSuitableElectronicEnergyLevelsandBroadAbsorption47.Surfacemodificationoftitanium,titaniumalloys,andrelatedmaterialsforbiomedicalapplications48.GrapheneAnchoredwithCo3O4NanoparticlesasAnodeofLithiumIonBatterieswithEnhancedReversibleCapacityandCyclicPerformance49.Two-photonpolymerizationinitiatorsforthree-dimensionalopticaldatastorageandmicrofabrication50.CoupledSpinandValleyPhysicsinMonolayersofMoS2andOtherGroup-VIDichalcogenides51.EpidermalElectronics52.Aggregation-InducedEmission:TogetherWeShine,UnitedWeSoar!53.EffectsofF-dopingonthephotocatalyticactivityandmicrostructuresofnanocrystallineTiO2powders54.Graphene-BasedSupercapacitorwithanUltrahighEnergyDensity55.Hydrogenstorageinsingle-walledcarbonnanotubesatroomtemperature56.Greenluminescentcenterinundopedzincoxidefilmsdepositedonsiliconsubstrates57.Semiconductingpi-ConjugatedSystemsinField-EffectTransistors:AMaterialOdysseyofOrganicElectronics58.Intrinsicperoxidase-likeactivityofferromagneticnanoparticles59.Hyperbranchedpolymers:fromsynthesistoapplications60.Graphene-basedsemiconductorphotocatalysts61.UnderstandingTiO2Photocatalysis:MechanismsandMaterials62.SimultaneousEnhancementofOpen-CircuitVoltage,Short-CircuitCurrentDensity,andFillFactorinPolymerSolarCells63.EvolutionofOrganicAerosolsintheAtmosphere64.ValleypolarizationinMoS2monolayersbyopticalpumping65.Large-scalesynthesisofalignedcarbonnanotubes66.GrapheneOxide:Preparation,Functionalization,andElectrochemicalApplications67.AGraphenePlatformforSensingBiomolecules68.Ultrahighstrengthandhighelectricalconductivityincopper69.Onthecontrollablesoft-templatingapproachtomesoporoussilicates70.Colloidalcarbonspheresandtheircore/shellstructureswithnoble-metalnanoparticles71.FabricationandethanolsensingcharacteristicsofZnOnanowiregassensors72.SupercapacitorDevicesBasedonGrapheneMaterials73.CarbonMaterialsforChemicalCapacitiveEnergyStorage74.Principleofequal-channelangularpressingfortheprocessingofultra-finegrainedmaterials75.HighlyPhotoluminescentCarbonDotsforMulticolorPatterning,Sensors,andBioimaging76.Bioinspiredsurfaceswithspecialwettability77.SupercapacitorsBasedonFlexibleGraphene/PolyanilineNanofiberCompositeFilms78.High-mobilitytransportanisotropyandlineardichroisminfew-layerblackphosphorus79.Nanostructuredmaterialsforelectrochemicalenergyconversionandstoragedevices80.Metal-freeefficientphotocatalystforstablevisiblewatersplittingviaatwo-electronpathway81.Magneticorderclosetosuperconductivityintheiron-basedlayeredLaO(1-x)F(x)FeAssystems82.RecentAdvancesinMetalOxide-basedElectrodeArchitectureDesignforElectrochemicalEnergyStorage83.AGreenApproachtotheSynthesisofGrapheneNanosheets84.HighlyconductinggraphenesheetsandLangmuir-Blodgettfilms85.Ahole-conductor-free,fullyprintablemesoscopicperovskitesolarcellwithhighstability86.Grapheneplasmonicsfortunableterahertzmetamaterials87.HighlyEfficientVisible-Light-DrivenPhotocatalyticHydrogenProductionofCdS-Cluster-DecoratedGrapheneNanosheets88.HydrothermalRouteforCuttingGrapheneSheetsintoBlue-LuminescentGrapheneQuantumDots89.3DAperiodicHierarchicalPorousGraphiticCarbonMaterialforHigh-RateElectrochemicalCapacitiveEnergyStorage90.SynergeticEffectofMoS2andGrapheneasCocatalystsforEnhancedPhotocatalyticH-2ProductionActivityofTiO2Nanoparticles91.Low-temperatureoxidationofCOcatalysedbyCo3O4nanorods92.Room-temperaturestationarysodium-ionbatteriesforlarge-scaleelectricenergystorage93.Superconductivityat43KinSmFeAsO(1-x)F(x)94.Metal-OrganicFrameworkswithFunctionalPoresforRecognitionofSmallMolecules95.C-C,C-OandC-Nbondformationviarhodium(III)-catalyzedoxidativeC-Hactivation96.GrapheneOxide-MnO2NanocompositesforSupercapacitors97.Hydrogen-TreatedTiO2NanowireArraysforPhotoelectrochemicalWaterSplitting98.DirectC-HTransformationviaIronCatalysis99.GrapheneinMice:UltrahighInVivoTumorUptakeandEfficientPhotothermalTherapy100.Couplestressbasedstraingradienttheoryforelasticity往期回顾:幕后那些年,幕后我们在SCI中吃过的狗粮…我也曾想支持国产期刊,但现实让我选择了SCI

周鸿祎的前半生:3Q大战、3721、雅虎中国的幕后故事

周鸿战载流子扩散长度从500nm延伸到2.5微米。然而由于缺乏高效率、祎的低带隙的混合钙钛矿太阳能电池,全钙钛矿基叠层器件的性能被大大限制。

周鸿祎的前半生:3Q大战、3721、雅虎中国的幕后故事

当与宽带隙太阳能电池结合时,前半研究人员更是获得了效率分别高达25%的4端和23.1%的2端全钙钛矿型多晶薄膜串联太阳能电池。

虎中而全钙钛矿多晶薄膜叠层太阳能电池也具有提供大于30%效率的潜力。竞争者中,国的故事最大的变数恐怕还是王思聪创办的熊猫TV。

艾瑞咨询称,幕后国内整体电竞用户规模在2016年有望超过1亿,未来三年的增长率将保持在20%以上。自从2014年下半年开始,周鸿战腾讯要投资斗鱼的传闻时不时地就会冒下泡,但最终都不了了之。

虽然游戏直播确实处于风口之上,祎的但另一个无法回避的问题是,这是一个烧钱不亚于O2O的行业。YY的CFO何震宇曾公开表示,前半游戏直播业务,也就是虎牙直播,打算投资7亿人民币,包括了带宽方面的投入。

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