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1、AcceptedArticleTitle:PhotoelectrochemicalProbingofCellularInterfaceandEvaluationofCellularH2SProductionBasedontheInSitu-GeneratedCdS-EnhancedTiO2NanotubesHeterostructuresAuthors:Yuan-ChengZhu,QianWang,Li-BinZhang,Wei-WeiZhao,Jing-JuanXu,andHong-YuanChenThismanuscripthasbeenacceptedafter
2、peerreviewandappearsasanAcceptedArticleonlinepriortoediting,proofing,andformalpublicationofthefinalVersionofRecord(VoR).ThisworkiscurrentlycitablebyusingtheDigitalObjectIdentifier(DOI)givenbelow.TheVoRwillbepublishedonlineinEarlyViewassoonaspossibleandmaybedifferenttothisAcceptedArticle
3、asaresultofediting.ReadersshouldobtaintheVoRfromthejournalwebsiteshownbelowwhenitispublishedtoensureaccuracyofinformation.TheauthorsareresponsibleforthecontentofthisAcceptedArticle.Tobecitedas:ChemElectroChem10.1002/celc.201700149LinktoVoR:http://dx.doi.org/10.1002/celc.201700149AJourna
4、lofwww.chemelectrochem.orgChemElectroChem10.1002/celc.201700149ARTICLEPhotoelectrochemicalProbingofCellularInterfaceandEvaluationofCellularH2SProductionBasedontheInSitu-GeneratedCdS-EnhancedTiO2NanotubesHeterostructuresYuan-ChengZhu,QianWang,Li-BinZhang,Wei-WeiZhao,*Jing-JuanXu*andHong-
5、YuanChenAbstract:Judiciouslyintegratednanostructuredmaterials/cellularstimulation,detectionaswellasphysiologicalsensing.Sensitiveinterfacecouldbeappliedforvariouselegantapplicationsincludingandreal-timemonitoringoftracephysiologicmessengerphysiologicalmonitoring.PhysiologicalH2Sisthethi
6、rdmostmoleculessuchasnitricoxide(NO),carbonmonoxide(CO)andimportantendogenouslygeneratedgasotransmitterandisbelievedhydrogensulfide(H2S)fromcellsisessentialformedicaltoberelatedwithmanydiseases.Thisworkreportsthenovelresearch,diseasediagnosis,andelucidationoffundamentalphotoelectrochemi
7、cal(PEC)probingofcellularinterfaceandcellularfunctions.H2S,thethirdmostimportantendogenouslyevaluationofcellularH2Sproductionbasedontheinsitu-generatedgeneratedgasotransmitter,isgenerallyproducedendogenouslyCdS-enhancedTiO2nanotubes(NTs)heterostructures.Wechoseinmammaliansystem