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dc.contributor.authorEFKERE, HALİL İBRAHİM
dc.contributor.authorGÜZELÇİMEN, Feyza
dc.contributor.authorCandan, Idris
dc.contributor.authorÖZEN, YUNUS
dc.contributor.authorÖZÇELİK, SÜLEYMAN
dc.contributor.authorÇETİNKAYA, Çağlar
dc.contributor.authorÇOKDUYGULULAR, Erman
dc.contributor.authorKINACI, Barış
dc.date.accessioned2021-12-10T12:54:30Z
dc.date.available2021-12-10T12:54:30Z
dc.identifier.citationÇETİNKAYA Ç., ÇOKDUYGULULAR E., KINACI B., GÜZELÇİMEN F., Candan I., EFKERE H. İ. , ÖZEN Y., ÖZÇELİK S., "Evaluation on output parameters of the inverted organic solar cells depending on transition-metal-oxide based hole-transporting materials", OPTICAL MATERIALS, cilt.120, 2021
dc.identifier.issn0925-3467
dc.identifier.othervv_1032021
dc.identifier.otherav_e0235f90-a2c7-448a-8bc9-9337fe672861
dc.identifier.urihttp://hdl.handle.net/20.500.12627/174949
dc.identifier.urihttps://doi.org/10.1016/j.optmat.2021.111457
dc.description.abstractThe study was focused on evaluating the effects of different hole transport layers (HTL) on optical, morphological, and electrical properties of organic solar cell (OSC) structures. Structuring the photoactive layer with blends of poly (3-hexylthiophene) (P3HT), and [6,6] -phenyl-C61-butyric acid methyl ester (PCBM) was practiced via spin coating technique. Transition-metal-oxides of vanadium pentoxide (V2O5), tungsten trioxide (WO3), and molybdenum trioxide (MoO3) as thin films with 10 nm thick were used for the HTL layers. The deposition of all interface layers except for P3HT:PCBM photoactive layer were radio-frequency (RF) magnetron sputtered. The surface morphological and optical properties of structures produced were examined by analyzing the UV Vis NIR and atomic force microscopy (AFM) measurements. The solar cell output parameters of the inverted OSCs produced were identified depending on transition-metal-oxide (TMO) based hole-transporting materials. MoO3 HTL was exhibited as smoothest interface with a root mean square (RMS) surface roughness value of 7.11 nm. The power conversion efficiency (PCE) values of OSCs with HTL of V2O5, WO3 and MoO3 were found as 1.91%, 2.04% and 2.11%, respectively. With a comparative investigation was reported that an OSC structure with HTL of MoO3 thin film providing optimal device performance in the present study might be preferred as an alternatively effective material for opto-electronic applications.
dc.language.isoeng
dc.subjectOptik
dc.subjectTemel Bilimler
dc.subjectMühendislik ve Teknoloji
dc.subjectMetals and Alloys
dc.subjectMaterials Chemistry
dc.subjectGeneral Materials Science
dc.subjectPhysical Sciences
dc.subjectTemel Bilimler (SCI)
dc.subjectElektromanyetizma, Akustik, Isı Transferi, Klasik Mekanik ve Akışkanlar Dinamiği
dc.subjectFizik
dc.subjectOPTİK
dc.subjectMühendislik, Bilişim ve Teknoloji (ENG)
dc.subjectMalzeme Bilimi
dc.subjectMALZEME BİLİMİ, MULTIDISCIPLINARY
dc.titleEvaluation on output parameters of the inverted organic solar cells depending on transition-metal-oxide based hole-transporting materials
dc.typeMakale
dc.relation.journalOPTICAL MATERIALS
dc.contributor.departmentİstanbul Üniversitesi , Fen Fakültesi , Fizik Bölümü
dc.identifier.volume120
dc.contributor.firstauthorID2751355


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