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1.Q.Zhan*(correspondingauthor),H.Liu,B.Wang,Q.Wu,R.Pu,C.Zhou,B.Huang,X.Peng,H.?gren,S.He*,Achievinghigh-efficiencyemissiondepletionnanoscopybyemployingcrossrelaxationinupconversionnanoparticles.NatureCommunications,2017,8,1058.
2.Q.Zhan,J.Qian,H.Liang,S.He,etal“Using915nmlaserexcitedTm3+/Er3+/Ho3+dopedNaYbF4upconversionnanoparticlesforinvitroanddeeperinvivobioimagingwithoutoverheatingirradiation”,ACSNano,2011,5,3744-3757.(IF:13.94,JCRQ1,Timescited:350)
3.Q.Zhan,X.Zhang,Y.Zhao,J.Liu,S.He.“Tensofthousands-foldupconversionluminescenceenhancementinducedbyasinglegoldnanorod.”Laser&PhotonicsReviews2015,9(5),479-487.(IF:8.43,JCRQ1)
4.C.T.Xu#,Q.Zhan#(equalcontributor),Liu,H.;Somesfalean,G.;Qian,J.;He,S.;Andersson-Engels,S.,“Upconvertingnanoparticlesforpre-clinicaldiffuseopticalimaging,microscopyandsensing:Currenttrendsandfuturechallenges”,Laser&PhotonicsReviews2013,1-35.(IF:8.43,JCRQ1)
5.Min,Q.,Lei,J.,Guo,X.,Wang,T.,Yang,Q.,Zhou,D.,Yu,X.,Yu,S.F.,Qiu,J.,Zhan,Q.*,Xu,X.(2019),Atomic‐LevelPassivationofIndividualUpconversionNanocrystalforSingleParticleMicroscopicImaging.Adv.Funct.Mater.,1906137.https://doi.org/10.1002/adfm.201906137
6.Huang,B.;Bergstrand,J.;Duan,S.;Zhan,Q.*;Widengren,J.;?gren,H.;Liu,H.,OvertoneVibrationalTransition-InducedLanthanideExcited-StateQuenchinginYb3+/Er3+-DopedUpconversionNanocrystals.ACSNano2018,12(11),10572-10575.(IF:13.94,JCRQ1)
7.Q.Zhan,S.L.He,J.Qian,H.Cheng,F.H.Cai“OptimizationofOpticalExcitationofUpconversionNanoparticlesforRapidMicroscopyandDeeperTissueImagingwithHigherQuantumYield”,Theranostics,2013,3(5),306-316.(IF:8.76,JCRQ1)
8.Huang,B.;Wu,Q.;Peng,X.;Yao,L.;Peng,D.;Zhan,Q.*,One-scanfluorescenceemissiondifferencenanoscopydevelopedwithexcitationorthogonalizedupconversionnanoparticles.Nanoscale2018,10,21025-21030.(JCRQ1)
9.Peng,X.;Huang,B.;Pu,R.;Liu,H.;Zhang,T.;Widengren,J.;Zhan,Q.*,?gren,H.,Fastupconversionsuper-resolutionmicroscopywith10-?s/pixeldwelltimes.Nanoscale2019,11,1563-1569.(JCRQ1)
10.Bergstrand,J.;Liu,Q.;Huang,B.;Peng,X.;Würth,C.;Resch-Genger,U.;Zhan,Q.*.;Widengren,J.;?gren,H.;Liu,H.,Onthedecaytimeofupconversionluminescence.Nanoscale2019,11,4959-4969.(JCRQ1)
11.R.Wu,Q.Zhan*,H.Liu,X.Wen,B.Wang,S.He.“Opticaldepletionmechanismofupconvertingluminescenceanditspotentialformulti-photonSTED-likemicroscopy.”OpticsExpress2015,23(25),32401-32412(JCRQ2)
12.B.Wang,Q.Zhan*,Y.Zhao,R.Wu,J.Liu,S.He.“Visible-to-visiblefour-photonultrahighresolutionmicroscopicimagingwith730-nmdiodelaserexcitednanocrystals.”OpticsExpress2016,24(2),A302-A311(JCRQ2)
13.WuQ,HuangB,PengX,HeS,Q.Zhan*.Non-bleachingfluorescenceemissiondifferencemicroscopyusingsingle808-nmlaserexcitedredupconversionemission.OpticsExpress,2017,25,30885-30894.
14.Usman,M.;Guo,X.;Wu,Q.;Barman,J.;Su,S.;Huang,B.;Biao,T.;Zhang,Z.;Zhan,Q.*,Facilesiliconeoil-coatedhydrophobicsurfaceforsurfaceenhancedRamanspectroscopyofantibiotics.RSCAdvances2019,9,14109-14115.
15.Y.Zhao,Q.Zhan*;J.Liu,S.He,“OpticallyinvestigatingNd3+-Yb3+cascadesensitizedupconversionnanoparticlesforhighresolution,rapidscanning,deepanddamage-freebio-imaging.”BiomedicalOpticsExpress2015,6(3),838-848.(JCRQ2)
16.Q.Zhan,BaojuWang,XuanyuanWenandSailingHe*,"Controllingtheexcitationofupconvertingluminescenceforbiomedicaltheranostics:neodymiumsensitizing."OpticalMaterialsExpress,2016,6(4):1011-1023.
17.J.Liu,R.Wu,N.Li,X.Zhang,Q.Zhan*;S.He,“Deep,highcontrastmicroscopiccellimagingusingthree-photonluminescenceofB-(NaYF4:Er3+/NaYF4)nanoprobeexcitedby1480-nmCWlaserofonly1.5-mW.”BiomedicalOpticsExpress2015,6(5),1857-1866.(JCRQ2)
18.NanaLi,XuanyuanWen,JingLiu,BaojuWang,Q.Zhan*andSailingHe,"Yb3+-enhancedUCNP@SiO2nanocompositesforconsecutiveimaging,photothermal-controlleddrugdeliveryandcancertherapy"OpticalMaterialsExpress,2016,6(4):1161-1171.
19.J.Liu,N.Li,R.Wu,Y.Zhao,Q.Zhan*,S.He,"Sub-5-nmlanthanide-dopedZrO2@NaYF4nanodotsasefficientupconvertingprobesforrapidscanningmicroscopyandaptamer-mediatedbioimaging."OpticalMaterialsExpress2015,5(8),1759-1771(JCRQ2)
20.X.Wen,B.Wang,R.Wu,N.Li,S.He,Q.Zhan*.“DesignedEr3+-singlydopedNaYF4withdoubleexcitationbandsforsimultaneousdeepmacroscopicandmicroscopicupconvertingbioimaging.”BiomedicalOpticsExpress,2016,7(6):2174.(JCRQ2)
21.Wei,Y.;Quan,L.;Zhou,C.;Zhan,Q.*,Factorsrelatingtothebiodistribution&clearanceofnanoparticles&theireffectsoninvivoapplication.Nanomedicine2018,13(12),1495-1512.(JCRQ1)
22.Usman,M.;Guo,X.;Wu,Q.;Barman,J.;Su,S.;Huang,B.;Biao,T.;Zhang,Z.;Q.Zhan*,Facilesiliconeoil-coatedhydrophobicsurfaceforsurfaceenhancedRamanspectroscopyofantibiotics.RSCAdvances2019,9,14109-14115.
23.Tan,C.;Su,X.;Zhou,C.;Wang,B.;Q.Zhan*;He,S.,Acid-assistedhydrothermalsynthesisofredfluorescentcarbondotsforsensitivedetectionofFe(iii).RSCAdvances2017,7,40952-40956.(IF:3.01)
24.Tan,C.;Zhou,C.;Peng,X.;Zhi,H.;Wang,D.;Zhan,Q*.;He,S.,SulfuricAcidAssistedPreparationofRed-EmittingCarbonizedPolymerDotsandtheApplicationofBio-Imaging.NanoscaleResearchLetters2018,13(1),272.(JCRQ2)
25.Li,Z.;Gao,L.;Wang,S.;Ji,S.;Tan,J.;Peng,X.;Zhan,Q.*;Huo,Y.,Twocubane-typeLn4(OH)4compoundsderivedfromtridentateligand8-hydroxyquinoline:Synthesis,structures,one/two-photonluminescenceandmagnetism.JournalofLuminescence2018,198,208-214.(IF:2.65)(JCRQ2)
26.Lei,J.;Guo,X.;Min,Q.;Yang,L.;Yang,Q.;Wang,C.;Luo,H.;Yu,X.;Qiu,J.;Zhan,Q.*;Xu,X.,Brighteningupconvertingnanocrystalsusinglaser-inducedsurfacereconstruction.MaterialsTodayNano2019,100055.
27.Q.Zhan,J.Qian,X.LiandS.He"AStudyofMesoporousSilica-encapsulatedGoldNanorodsasEnhancedLightScatteringProbesforCancerCellImaging"Nanotechnology,21(2010),055704.
28.Cheng,X.;Ge,H.;Wei,Y.;Zhang,K.;Su,W.;Zhou,J.;Yin,L.;Zhan,Q.;Jing,S.;Huang,L.,DesignforBrighterPhotonUpconversionEmissionsviaEnergyLevelOverlapofLanthanideIons.ACSNano2018.(JCRQ1)
29.Liu,H.;Huang,K.;Valiev,R.R.;Zhan,Q.;Zhang,Y.;?gren,H.,PhotonUpconversionKineticNanosystemsandTheirOpticalResponse.Laser&PhotonicsReviews2018,12.(IF:8.43,JCRQ1)
30.QDing,QZhan,XZhou,TZhang,DXing-TheranosticUpconversionNanobeaconsforTumormRNARatiometricFluorescenceDetectionandImaging‐MonitoredDrugDelivery,Small,2016(JCRQ1)
31.Yang,D.;Peng,Z.;Zhan,Q.;Huang,X.;Peng,X.;Guo,X.;Dong,G.;Qiu,J.,AnisotropicExcitationPolarizationResponsefromaSingleWhiteLight-Emittingβ-NaYF4:Yb3+,Pr3+Microcrystal.Small2019,0,1904298.(JCRQ1)
32.J.Qian;D.Wang;F.Cai;Q.Zhan;Y.Wang;S.He,PhotosensitizerEncapsulatedOrganicallyModifiedSilicaNanoparticlesforDirectTwo-photonPhotodynamicTherapyandInVivoFunctionalImaging.Biomaterials2012,33(19),4851-4860.(JCRQ1)
33.Feng,Z.;Hu,D.;Liang,L.;Xu,J.;Cao,Y.;Zhan,Q.;Guan,B.-O.;Liu,X.;Li,X.,Laser-SplashedPlasmonicNanocraterforRatiometricUpconversionRegulationandEncryption.AdvancedOpticalMaterials2019,1900610.(JCRQ1)
34.Pan,Q.;Cai,Z.;Yang,Y.;Yang,D.;Kang,S.;Chen,Z.;Qiu,J.;Zhan,Q.;Dong,G.,EngineeringTunableBroadbandNear-InfraredEmissioninTransparentRare-EarthDopedNanocrystals-in-GlassCompositesviaaBottom-UpStrategy.AdvancedOpticalMaterials2019,1801482.(JCRQ1)
35.Su,R.;Wang,D.;Liu,M.;Yan,J.;Wang,J.-X.;Zhan,Q.;Pu,Y.;Foster,N.R.;Chen,J.-F.,Subgram-ScaleSynthesisofBiomassWaste-DerivedFluorescentCarbonDotsinSubcriticalWaterforBioimaging,Sensing,andSolid-StatePatterning.ACSOmega2018,3(10),13211-13218.
36.J.Qian,T.Fu,Q.ZhanandS.He(invitedreviewpaper),“UsingSomeNanoparticlesasContrastAgentsforOpticalBio-imaging”,IEEEJournalofSelectedTopicsinQuantumElectronics,2010,16(3),672-684.(JCRQ2)
37.Wang,D.;Wang,Z.;Zhan,Q.;Pu,Y.;Wang,J.-X.;Foster,N.R.;Dai,L.,FacileandScalablePreparationofFluorescentCarbonDotsforMultifunctionalApplications.Engineering2017,3,402-408.(ESI高被引)
38.Wang,T.;Lin,Y.;Lu,W.;Guo,X.;Qiu,J.;Yu,X.;Zhan,Q.;Yu,S.F.;Xu,X.,GrowthProcessesofLuF3UpconversionNanoflakeswiththeAssistanceofAmorphousNanoclusters.ACSAppliedNanoMaterials2019,2,5254-5259.
39.Y.Cui,H.Zhao,F.Yang,P.Tong,Y.Hao,Q.Sun,F.Shi,Q.Zhan,H.Wang,F.Zhu.“Efficiencyenhancementinorganicsolarcellsbyincorporatingsilica-coatedgoldnanorodsatthebuffer/activeinterface.”JournalofMaterialsChemistryC2015,3(38),9859-9868(JCRQ1)
40.Liu,D.;Liang,Q.;Li,G.;Gao,X.;Wang,W.;Q.Zhan;Ji,T.;Hao,Y.;Cui,Y.,ImprovedEfficiencyofOrganicPhotovoltaicCellsbyIncorporationofAuAg-AlloyedNanoprisms.IEEEJournalofPhotovoltaics2017,7,1036-1041.
41.Sathishkumar,P.;Gu,F.L.;Zhan,Q.;Palvannan,T.;MohdYusoff,A.R.,Flavonoidsmediated‘Green’nanomaterials:Anovelnanomedicinesystemtotreatvariousdiseases–Currenttrendsandfutureperspective.MaterialsLetters2018,210,26-30.
42.Zhang,D.-Y.;Zheng,Y.;Zhang,H.;He,L.;Tan,C.-P.;Sun,J.-H.;Zhang,W.;Peng,X.;Zhan,Q.;Ji,L.-N.;Mao,Z.-W.,Rutheniumcomplex-modifiedcarbonnanodotsforlysosome-targetedone-andtwo-photonimagingandphotodynamictherapy.Nanoscale2017,9,18966-18976.(JCRQ1)
43.T.Wang,Y.Lin,W.Lu,X.Guo,J.Qiu,X.Yu,Q.Zhan,S.F.Yu,andX.Xu(2019),GrowthProcessesofLuF3UpconversionNanoflakeswiththeAssistanceofAmorphousNanoclusters,ACSAppliedNanoMaterials,(8),5254-5259
44.X.Li,L.Jiang,Q.Zhan,J.QianandS.He,“LocalizedSurfacePlasmonResonance(LSPR)ofPolyelectrolyte-functionalizedGold-nanoparticlesforBio-sensing”,ColloidsandSurfacesA:PhysicochemicalandEngineeringAspects,2009,332,172-179.
45.Yang,Y.;Hu,Z.;Wang,Y.;Wang,B.;Zhan,Q.;Zhang,Y.;Ao,X.,BroadbandSERSsubstratesbyobliqueangledepositionmethod.Opt.Mater.Express2016,6,2644-2654.
46.Xing,F.;Zhan,Q.;He,Y.;Cui,J.;He,S.;Wang,G.,1800MHzMicrowaveInducesp53andp53-MediatedCaspase-3ActivationLeadingtoCellApoptosisInVitro.PLoSONE2016,11,e0163935.
47.Sathishkumar,P.;Li,Z.;Huang,B.;Guo,X.;Zhan,Q.;Wang,C.;Gu,F.L.,Understandingthesurfacefunctionalizationofmyricetin-mediatedgoldnanoparticles:Experimentalandtheoreticalapproaches.AppliedSurfaceScience2019,493,634-644.
48.X.Liu,J.Lin,T.Jiang,Z.Zhu,Q.Zhan,J.Qian,andS.He,"SurfaceplasmonpropertiesofhollowAu-Agalloyedtriangularnanoboxesanditsapplicationsinsersimagingandpotentialdrugdelivery,"ProgressInElectromagneticsResearch,Vol.128,35-53,2012
49.Liu,M.;Q.Zhan;Li,W.;Li,R.;He,Q.;Wang,Y.,EffectofZndopingconcentrationonopticalbandgapofPbSthinfilms.JournalofAlloysandCompounds2019,792,1000-1007.(JCRQ1)
50.J.Qian,Y.Wang,X.Gao,Q.Zhan,Z.XuandS.He,“Carboxyl-functionalizedandBio-conjugatedSilicacoatedQuantumDotsasTargetingProbesforCellImaging,”JournalofNanoscienceandNanotechnology,2010,10(1-8).