Modulating electron transport at the IrO_x / TiO_x interface in proton exchange membrane water electrolysis양이온 교환막 수전해 양극에서의 이리듐 산화물 및 티타늄 산화물 계면 전자 전달 제어

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dc.contributor.advisor김희탁-
dc.contributor.authorPark, Jeesoo-
dc.contributor.author박지수-
dc.date.accessioned2024-07-30T19:31:03Z-
dc.date.available2024-07-30T19:31:03Z-
dc.date.issued2024-
dc.identifier.urihttp://library.kaist.ac.kr/search/detail/view.do?bibCtrlNo=1096694&flag=dissertationen_US
dc.identifier.urihttp://hdl.handle.net/10203/321477-
dc.description학위논문(석사) - 한국과학기술원 : 생명화학공학과, 2024.2,[iii, 34 p :]-
dc.description.abstractPolymer electrolyte membrane water electrolysis (PEMWE) is garnering significant scientific interest for the carbon neutrality. This is attributed to its capacity to facilitate extensive-scale generation of pure green hydrogen under elevated pressure. Nonetheless, a substantial contact resistance between iridium oxide catalyst layer and Ti porous transport layer (PTL) degrades the performance and eventually increases the green hydrogen cost. The band bending phenomenon, Schottky contact, in titanium oxide (TiOx, n-type semiconductor) caused by the contact with high work function of iridium oxide (IrOx) induces the large contact resistance with high energy barrier. This study investigates how the presence of ionomer at the interface, along with IrOx, maximizes Schottky barrier by pinch-off effect, as determined through electrochemical analysis and COMSOL simulation. In light of the results, we determined that a catalyst exceeding the scale of 30 nm reduces the contact resistance between IrOx / TiOx caused by pinch-off effect, as compared to a smaller catalyst (10 nm). This work provides valuable outcomes to design optimal catalyst structure for reducing ohmic overpotential at the PEMWE.-
dc.languageeng-
dc.publisher한국과학기술원-
dc.subject이리듐 산화물▼a티타늄 산화물▼a쇼트키 접합▼a핀치 오프 효과▼a에너지 장벽-
dc.subjectIridium oxide▼aTitanium oxide▼aSchottky contact▼aPinch-off effect▼aEnergy barrier-
dc.titleModulating electron transport at the IrO_x / TiO_x interface in proton exchange membrane water electrolysis-
dc.title.alternative양이온 교환막 수전해 양극에서의 이리듐 산화물 및 티타늄 산화물 계면 전자 전달 제어-
dc.typeThesis(Master)-
dc.identifier.CNRN325007-
dc.description.department한국과학기술원 :생명화학공학과,-
dc.contributor.alternativeauthorKim, Hee-Tak-
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