Improvement of pentathiophene/fullerene planar heterojunction photovoltaic cells by improving the organic films morphology through the anode buffer bilayer
Author
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El Jouad, Zouhair
Author
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Cattin, Linda
Author
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Martínez, Francisco
Author
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Neculqueo, Gloria
Author
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Louarn, Guy
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Addou, Mohammed
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Predeep, Padmanabhan
Author
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Manuvel, Jayan
Author
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Bernede, Jean-Christian
Admission date
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2016-12-15T20:31:31Z
Available date
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2016-12-15T20:31:31Z
Publication date
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2016
Cita de ítem
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European Physical Journal-Applied Physics. Volumen: 74 Número: 2 Número especial: SI
es_ES
Identifier
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https://repositorio.uchile.cl/handle/2250/141930
Abstract
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Organic photovoltaic cells (OPVCs) are based on a heterojunction electron donor (ED)/electron acceptor (EA). In the present work, the electron donor which is also the absorber of light is pentathiophene. The typical cells were ITO/HTL/pentathiophene/fullerene/Alq(3)/Al with HTL (hole transport layer) = MoO3, CuI, MoO3/CuI. After optimisation of the pentathiophene thickness, 70 nm, the highest efficiency, 0.81%, is obtained with the bilayer MoO3/CuI as HTL. In order to understand these results the pentathiophene films deposited onto the different HTLs were characterized by scanning electron microscopy, atomic force microscopy, X-rays diffraction, optical absorption and electrical characterization. It is shown that CuI improves the conductivity of the pentathiophene layer through the modification of the film structure, while MoO3 decreases the leakage current. Using the bilayer MoO3/CuI allows cumulating the advantages of each layer.
Improvement of pentathiophene/fullerene planar heterojunction photovoltaic cells by improving the organic films morphology through the anode buffer bilayer