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Efficient triple-layer photoanode incorporated with nitrogen-doped TiO2 nanocrystals for CdS quantum dot-sensitized solar

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dc.contributor.author Sandamali, W. I.
dc.contributor.author Senadeera, G. K. R.
dc.contributor.author Liyanage, T. S. M.
dc.contributor.author Kumari, J. M. K. W.
dc.contributor.author Jaseetharan, T.
dc.contributor.author Weerasinghe, A. M. J. S.
dc.contributor.author Perera, V. P. S.
dc.contributor.author Rajendra, J. C. N.
dc.contributor.author Karthikeyan, N.
dc.contributor.author Dissanayake, M. A. K. L.
dc.date.accessioned 2023-07-31T07:30:16Z
dc.date.available 2023-07-31T07:30:16Z
dc.date.issued 2022-12-15
dc.identifier.citation Ceylon Journal of Science 51(4) 2022: pp. 449-457. en_US
dc.identifier.issn 2513-2814
dc.identifier.uri http://doi.org/10.4038/cjs.v51i4.8062
dc.identifier.uri http://ir.lib.seu.ac.lk/handle/123456789/6726
dc.description.abstract Nitrogen-doped (N-doped) TiO2 nanocrystals were synthesized by adopting a wet chemical method, in which titanium tetraisopropoxide (TTIP) was hydrolyzed with aqueous ammonia under a continuous flow of nitrogen gas. Triple layer photoanode, consisting of TiO2 P90, TiO2 P25 and N-doped TiO2 nanomaterials, was developed by utilizing the spin coating and doctor blading techniques and subjecting to thermal treatment. Photoanodes were sensitized with CdS quantum dots by the successive ionic layer adsorption and reaction method. Quantum dot-sensitized solar cells (QDSSCs) were fabricated by assembling photoanodes with Pt counter electrode and polysulfide electrolyte. Material characterizations for N-doped TiO2 were conducted by TEM, XRD, UV-Visible spectroscopy and Mott-Schottky techniques. Fabricated QDSSCs were evaluated by incident photon-to-electron conversion efficiency (IPCE) spectroscopy, current-voltage (J-V) characteristics and electrochemical impedance spectroscopic (EIS) measurements. QDSSCs with N-doped TiO2 achieved an overall power conversion efficiency of 1.35 % while QDSSCs with TiO2 P25 showed only 1.04 %. Overall power conversion efficiency enhancement of 29.81 % was achieved by incorporating N-doped TiO2 in the triple-layer photoanode, which Is attributed to increased photocurrent generation in the photoanode. Enhanced IPCE and reduced charge transfer resistance at the photoanode/ electrolyte interface (R2ct) agree with improved photoactivity of the triple-layer photoanode incorporated with N-doped TiO2. en_US
dc.language.iso en_US en_US
dc.publisher Faculty of Science, University of Peradeniya, Sri Lanka en_US
dc.subject N-doped TiO2 en_US
dc.subject Triple Lyer TiO2 en_US
dc.subject Photoanode en_US
dc.subject QDSSC en_US
dc.subject CdS quantum Dots en_US
dc.title Efficient triple-layer photoanode incorporated with nitrogen-doped TiO2 nanocrystals for CdS quantum dot-sensitized solar en_US
dc.type Article en_US


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