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dc.contributor.author김동하*
dc.date.accessioned2017-11-01T05:01:58Z-
dc.date.available2017-11-01T05:01:58Z-
dc.date.issued2017*
dc.identifier.issn1567-1739*
dc.identifier.otherOAK-21150*
dc.identifier.urihttps://dspace.ewha.ac.kr/handle/2015.oak/239068-
dc.description.abstractSurface engineering of the electron collecting layers (ECLs) is a straightforward and practical strategy to develop high performance inverted structure organic solar cells (OSCs). Here, we systematically investigate four different types of surface modified ECLs to implement high performance low-energy band gap poly[4,8-bis[(2-ethylhexyl)oxy]benzo[1,2-b:4,5-bA]dithiophene-2,6-diyl][3-fluoro-2-[(2-ethylhexyl)carbonyl]thieno[3,4-b]-thiophenediyl] (PTB7) and [6,6]-phenyl-C70-butyric acid methyl ester (PC70BM) based inverted OSCs: (1) single PEIE, (2) ZnO:PEIE mixture (1:1 vol ratio), (3) PEIE/ZnO bilayer, and (4) ZnO/PEIE bilayer. OSCs with the ZnO/PEIE ECL show the highest power conversion efficiency (PCE) value of 8.61% while all the other devices exhibit PCE values of less than 7.80%. The excellent surface coverage as well as proper band alignment of the ZnO/PEIE bilayer leads to the highest device performance. © 2017 Elsevier B.V.*
dc.languageEnglish*
dc.publisherElsevier B.V.*
dc.subjectElectron collecting layers*
dc.subjectOrganic solar cell*
dc.subjectSurface engineering*
dc.titleSurface engineering of the electron collecting layers for high performance organic photovoltaic cells*
dc.typeArticle*
dc.relation.issue11*
dc.relation.volume17*
dc.relation.indexSCIE*
dc.relation.indexSCOPUS*
dc.relation.indexKCI*
dc.relation.startpage1476*
dc.relation.lastpage1482*
dc.relation.journaltitleCurrent Applied Physics*
dc.identifier.doi10.1016/j.cap.2017.08.014*
dc.identifier.wosidWOS:000410815300017*
dc.identifier.scopusid2-s2.0-85027960604*
dc.author.googleLim J.W.*
dc.author.googleShim J.W.*
dc.author.googleChung K.*
dc.author.googleKim D.H.*
dc.author.googleChoi W.K.*
dc.author.googleHwang D.K.*
dc.contributor.scopusid김동하(26039227400)*
dc.date.modifydate20240123104500*
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자연과학대학 > 화학·나노과학전공 > Journal papers
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