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Inverted PTB7-Th:PC71BM organic solar cells with 11.8% PCE via incorporation of gold nanoparticles in ZnO electron transport layer Usmani B, Ranjan R, Prateek, Gupta SK, Gupta RK, Nalwa KS, Garg A Solar Energy, 214, 220, 2021 |
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Small molecular electrolytes as the interlayer for enhanced performance of organic solar cellsExperimental Jeong M, Jin HC, Kim JH Molecular Crystals and Liquid Crystals, 705(1), 22, 2020 |
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Low-temperature solution-processed ionic liquid modified SnO2 as an excellent electron transport layer for inverted organic solar cells Tran VH, Khan R, Lee IH, Lee SH Solar Energy Materials and Solar Cells, 179, 260, 2018 |
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Characterization of ZnO-Graphene electron transfer layer co-deposited by cyclic voltammetry for inverted organic solar cells Ahn JS, Ahn JW, Park YC, Kim SJ, Han EM Molecular Crystals and Liquid Crystals, 654(1), 22, 2017 |
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Stability and reliability of P3HT:PC61BM inverted organic solar cells Chander N, Singh S, Iyer SSK Solar Energy Materials and Solar Cells, 161, 407, 2017 |
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Impact of sputtered ZnO interfacial layer on the S-curve in conjugated polymer/fullerene based-inverted organic solar cells Jouane Y, Colis S, Schmerber G, Dinia A, Bazylewski P, Chang GS, Chapuis YA Thin Solid Films, 576, 23, 2015 |
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Efficient inverted organic solar cells using Zn-doped titanium oxide films as electron transport layers Yuan SS, Zhang Y, Liu WQ, Zhang WF Electrochimica Acta, 116, 442, 2014 |
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Inverted organic solar cells employing RGO/TiOx composite films as electron transport layers Zhang Y, Yuan SS, Liu WQ Electrochimica Acta, 143, 18, 2014 |
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Enhanced photovoltaic performance of inverted organic solar cells with In-doped ZnO as an electron extraction layer Thambidurai M, Kim JY, Kang CM, Muthukumarasamy N, Song HJ, Song JY, Ko Y, Velauthapillai D, Lee C Renewable Energy, 66, 433, 2014 |
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Hybrid electrohydrodynamic atomization of nanostructured silver top contact for inverted organic solar cells Kim J, Duraisamy N, Lee TM, Kim I, Choi KH Solar Energy Materials and Solar Cells, 130, 156, 2014 |