近期论文
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1)LiorNa-ionBatteries:
[1]ZhenshengHong*,YichaoZhen,YurongRuan,MeilingKang,KaiqiangZhou,Jian-MinZhang*,ZhigaoHuang,andMingdengWei.RationaldesignandgeneralsynthesisofS-dopedhardcarbonwithtunabledopingsitestowardexcellentNa-ionstorageperformance.Adv.Mater.,2018,1802035.
[2]MeilingKang,YingyingWu,XinHuang,KaiqiangZhou,ZhigaoHuangandZhenshengHong*.EngineeringofaTiO2AnodetowardaRecordHighInitialCoulombicEfficiencyEnablingHigh-PerformanceLow-TemperatureNa-IonHybridCapacitors.J.Mater.Chem.A,2018,6,22840.
[3]ZhenshengHong,MingdengWei,*TongbinLan,LilongJiang,GuozhongCao*.Additive-freesynthesisofuniqueTiO2mesocrystalswithenhancedlithium-ionintercalationproperties.EnergyEnviron.Sci.,2012,5,5408-5413.(Cited127times)
[4]ZhenshengHong,XiangzhenZheng,XiaokunDing,LilongJiang,MingdengWei*,KemeiWei.Complexspineltitanatenanowiresforahighratelithium-ionbattery.EnergyEnviron.Sci.,2011,4,1886-1891.(Cited86times)
[5]ZhenshengHong,TongbinLan,MingdengWei,*GuozhongCao*.Self-assemblednanoporousrutileTiO2mesocrystalswithtunablemorphologiesforhighratelithium-ionbatteries.NanoEnergy,2012,1,466-471.(Cited77times)
[6]ZhenshengHong*,MeilingKang,XiaohuiChen,KaiqiangZhou,ZhigaoHuang,andMingdengWei.SynthesisofmesoporousCo2+dopedTiO2nanodisksderivedfrommetalorganicframeworkswithimprovedsodiumstorageperformance.ACSAppl.Mater.Interfaces2017,9,32071-32079.
[7]KaiqiangZhou,MeilingKang,XiaoqingHe,ZhenshengHong*,ZhigaoHuang,andMingdengWei.Multi-functionalgumarabicbinderforNiFe2O4nanotubesanodesenablingexcellentLi/Na-ionstorageperformance.J.Mater.Chem.A,2017,5,18138-18147.
[8]KaiqiangZhou,LanfangLai,YichaoZhen,ZhenshengHong*,JuhuaGuo,ZhigaoHuang.RationaldesignofCo3O4/Co/carbonnanocagescompositesfrommetalorganicframeworksasanadvancedlithium-ionbatteryanode.Chem.Eng.J.,2017,316,137-145.
[9]ZhenshengHong*,KaiqiangZhou,JunwenZhang,ZhigaoHuangandMingdengWei*.FacilesynthesisofrutileTiO2mesocrystalswithenhancedsodiumstorageproperties.J.Mater.Chem.A,2015,3,17412-17416.(Cited51times)
[10]ZhenshengHong*,KaiqiangZhou,ZhigaoHuangandMingdengWei*.Iso-OrientedAnataseTiO2MesocagesasaHighPerformanceAnodeMaterialforSodium-IonStorage.Sci.Rep.,2015,5:11960.(Cited43times)
[11]ZhenshengHong*,JiaxingHong,ChaobingXie,ZhigaoHuang,MingdengWei*.HierarchicalrutileTiO2withmesocrystallinestructureforLi-ionandNa-ionstorage.Electrochim.Acta,2016,202,203-208.
[12]ZhenshengHong*,KaiqiangZhou,JunwenZhangZhigaoHuangandMingdengWei*.Self-AssembledSynthesisofMesocrystallineTiO2@C-rGOHybridNanostructuresforHighlyReversibleSodiumStorage.Cryst.GrowthDes.2016,16,6605-6612.
[13]ZhenshengHongMingdengWei*.Layeredtitanatenanostructuresandtheirderivativesasnegativeelectrodematerialsforlithium-ionbatteries.J.Mater.ChemA.,2013,1,4403-4414.(Featurearticle,cited44times)
[14]ZhenshengHong,MingdengWei*.Recentprogressinpreparationandlithium-ionstoragepropertiesofTiO2mesocrystals.J.Chin.Chem.Soc.,2015,62,209-216.(Invitedreview,highlightedascover)
[15]KaiqiangZhou,ZhenshengHong*,ChaobingXie,HongDai,ZhigaoHuang*.MesoporousNiCo2O4nanosheetswithenhancesodiumionstorageproperties.J.AlloysCompd.,2015,651:24-28.(Cited23times)
[16]ZhenshengHong,YuxiaXu,YubinLiu,MingdengWei*.UniqueorderedTiO2superstructureswithtunablemorphologyandcrystallinephaseforimprovedlithiumstorageproperties.Chem.Eur.J.,2012,18,10753-10760.(Cited36times)
[17]ZhenshengHong,MingdengWei*,QixinDeng,XiaokunDing,LilongJiang,KemeiWei.AnewanodematerialmadeofZn2Ti3O8nanowires:synthesisandelectrochemicalproperties.Chem.Commun.,2010,46,740-742.(Cited23times)
[18]ZhenshengHong,MingdengWei*,XiaokunDing,LilongJiang,KemeiWei.Li2ZnTi3O8nanorods:Anewanodematerialforlithium-ionbattery.Electrochem.Commun.2010,12,720-723.(Cited61times)
[19]ZhenshengHong,TongbinLan,YongzanZheng.LilongJiang,MingdengWei*.SpinelLi2MTi3O8(M=Mg,Mg0.5Zn0.5)Nanowireswithenhancedelectrochemicallithiumstorage.Funct.Mater.Lett.,2011,4,65-69.(Cited39times)
[20]ZhenshengHong,TongbinLan,FuyuXiao,HuixingZhang,MingdengWei*.UltrathinLi4Ti5O12nanosheetsasahighperformanceanodeforLi-ionbattery.Funct.Mater.Lett.,2011,4,389-393.
[21]YonggangWang*,ZhenshengHong,MingdengWei*,YongyaoXia*.LayeredH2Ti6O13-Nanowires:Anewpromisingpseudocapacitivematerialinnon-aqueouselectrolyte.Adv.Funct.Mater.2012,22,5185-5193.
2)Otherelectrochemicalapplications:
[1]ZhenshengHong*,HongDai,ZhigaoHuangandMingdengWei*.Understandingthegrowthandphotoelectrochemicalpropertiesofmesocrystalsandsinglecrystals:acaseofanataseTiO2.Phys.Chem.Chem.Phys.,2014,16,7441-7447.
[2]XuechouZhou*,YuZhou,ZhenshengHong*,RixinLv,XinyuZhengandFeiWang.Designofmagneticcore-shellNi@graphenecompositesasanovelelectrochemicalsensingplatform.SensorsandActuatorsB,2018,2552959-2962.
[3]XuechouZhou*,ZhiweiYe,XinyuZheng,ZhenshengHong*.FabricationofCarbon@CoNanocages/Nafion/PolyTioproninCompositeFilmandItsApplicationforDeterminationofAcetaminophen.J.Electrochem.Soc.,2017,164,B513-B518.
[4]HongliZheng,QingrongZhang,ZhenshengHong*,YanyuLinc,HongDai*.AbifunctionalcatalystbasedECLimmunosensorforacardiacbiomarkerregulatedbyoxygenevolutionreaction.ElectrochimicaActa,2016,215,326-333.
[5]HongDai,LingshanGong,ShupeiZhang,GuifangXu,YilinLi,ZhenshengHong*,YanyuLin.All-in-onebioprobedevisedwithhierarchical-orderedmagneticNiCo2O4superstructureforultrasensitivedual-readoutimmunosensorforlogicdiagnosisoftumormarker.BiosensorsandBioelectronics,2016,77,928-935.
[6]YilinLi,HongDai*,QingrongZhang,ShupeiZhang,SihongChen,ZhenshengHong*andYanyuLin.Insitugenerationofelectronacceptortoamplifythephotoelectrochemicalsignalfrompoly(dopamine)-sensitizedTiO2signalcrystalforimmunoassay.J.Mater.Chem.B,2016,4,2591-2597.
[7]ShupeiZhang,HongDa*,ZhenshengHong*,YanyuLin.Anenzyme-freephotoelectrochemicalsensingofconcanavalinAbasedongraphene-supportedTiO2mesocrystal.SensorsandActuatorsB,2016,232,226–233.
[8]HongDai*,ShupeiZhang,LingshanGong,YilinLi,GuifangXu,YanyuLin,ZhenshengHong*.ThephotoelectrochemicalexplorationofmultifunctionalTiO2mesocrystalsanditsenzyme-assistedbiosensingapplication.BiosensorsandBioelectronics,2015,72:18-24.
[9]HongDai,*GuifangXu,ShupeiZhang,ZhenshengHong*andYanyuLin.AratiometricbiosensorformetallothioneinbasedonadualheterogeneouselectrochemiluminescentresponsefromaTiO2mesocrystallineinterface.Chem.Commun.,2015,51,7697-7700.