Bayram Kilic
Yalova University
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Publication
Featured researches published by Bayram Kilic.
Journal of Nanomaterials | 2012
Bayram Kilic; Emre Gür; S. Tüzemen
Nanoporous and macroporous structures were prepared by using self-assembled monolayer (SAM) onto ZnO thin films in order to investigate the efficiency of dye-sensitized solar cells (DSSCs) produced using these films. Using SAM on ZnO thin films, it is obtained successfully assembled large-area, highly ordered porous ZnO thin films. Varying nanoporous radius is observed between 20 and 50 nm sizes, while it is 500-800nm for macroporous radius. The solar conversion efficiency of 2.75% and IPCE of 29% was obtained using ZnO nanoporous/N719 dye/I-/I-3 electrolyte, while macroporous ZnO given solar conversion efficiency of 2.22% and IPCE of 18%.
Scientific Reports | 2016
Bayram Kilic; Sunay Turkdogan; Aykut Astam; Oguz Can Ozer; Mansur Asgin; Hülya Cebeci; Deniz Ürk; Selin Pravadili Mucur
Multi-walled carbon nanotube (MWCNT)/TiO2 mesoporous networks can be employed as a new alternative photoanode in dye-sensitized solar cells (DSSCs). By using the MWCNT/TiO2 mesoporous as photoanodes in DSSC, we demonstrate that the MWCNT/TiO2 mesoporous photoanode is promising alternative to standard FTO/TiO2 mesoporous based DSSC due to larger specific surface area and high electrochemical activity. We also show that iron pyrite (FeS2) thin films can be used as an efficient counter electrode (CE), an alternative to the conventional high cost Pt based CE. We are able to synthesis FeS2 nanostructures utilizing a very cheap and easy hydrothermal growth route. MWCNT/TiO2 mesoporous based DSSCs with FeS2 CE achieved a high solar conversion efficiency of 7.27% under 100 mW cm−2 (AM 1.5G 1-Sun) simulated solar irradiance which is considerably (slightly) higher than that of A-CNT/TiO2 mesoporous based DSSCs with Pt CE. Outstanding performance of the FeS2 CE makes it a very promising choice among the various CE materials used in the conventional DSSC and it is expected to be used more often to achieve higher photon-to-electron conversion efficiencies.
Journal of Applied Physics | 2015
Bayram Kilic; Hakan Telli; S. Tüzemen; Ali Başaran; Gursev Pirge
Dye sensitized solar cells (DSSCs) with an innovative design involving controlled-morphology vertically aligned (VA) ZnO nanowires within mesoporous TiO2 structures with ultrahigh surface area for implementation as photoanodes are herein reported. Although TiO2 nanostructures exhibit excellent power conversion efficiency, the electron transport rate is low owing to low electron mobility. To overcome this, ZnO nanowires with high electron mobility have been investigated as potential candidates for photoanodes. However, the power conversion efficiency of ZnO nanowires is still lower than that of TiO2 owing to their low internal surface area. Consequently, in this work, vertical growth of ZnO nanowires within mesoporous TiO2 structures is carried out to increase their solar power conversion efficiency. The photovoltaic performance of solar cells using ZnO nanowires, mesoporous TiO2, and TiO2/ZnO hybrid structures are compared. The VA TiO2/ZnO hybrid structures are found to provide direct electron transfer co...
Applied Surface Science | 2014
Bayram Kilic; Taylan Gunes; Ilknur Besirli; Merve Sezginer; S. Tüzemen
Materials Science in Semiconductor Processing | 2015
Bayram Kilic; Nebi Gedik; Selin Pıravadıllı Mucur; Ahmet Serhan Hergul; Emre Gür
Materials Letters | 2017
Bayram Kilic; Sunay Turkdogan
Materials Letters | 2016
Bayram Kilic; Sunay Turkdogan; Oguz Can Ozer; Mansur Asgin; Ö. Bayraklı; Gokhan Surucu; Aykut Astam; Duygu Ekinci
Journal of Nanoscience and Nanotechnology | 2013
Bayram Kilic; Lianzhou Wang; Orhan Ozdemir; M.G. Lu; S. Tüzemen
Materials Science in Semiconductor Processing | 2014
Bayram Kilic; Didem Omay
Applied Physics A | 2015
Bayram Kilic; Volkan Çelik