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Keywords = p-doped rubrene homoepitaxial layer

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8 pages, 2686 KB  
Article
Donor/Acceptor Photovoltaic Cells Fabricated on p-Doped Organic Single-Crystal Substrates
by Yusuke Yabara, Seiichiro Izawa and Masahiro Hiramoto
Materials 2020, 13(9), 2068; https://doi.org/10.3390/ma13092068 - 30 Apr 2020
Cited by 3 | Viewed by 2954
Abstract
In this study, the operation of donor/acceptor photovoltaic cells fabricated on homoepitaxially grown p-doped rubrene single-crystal substrates is demonstrated. The photocurrent density is dominated by the sheet conductivity (σ) of the p-type single-crystal layer doped to 100 ppm with [...] Read more.
In this study, the operation of donor/acceptor photovoltaic cells fabricated on homoepitaxially grown p-doped rubrene single-crystal substrates is demonstrated. The photocurrent density is dominated by the sheet conductivity (σ) of the p-type single-crystal layer doped to 100 ppm with an iron chloride (Fe2Cl6) acceptor. A 65 μm thick p-type rubrene single-crystal substrate is expected to be required for a photocurrent density of 20 mA·cm−2. An entire bulk doping technique for rubrene single crystals is indispensable for the fabrication of practical organic single-crystal solar cells. Full article
(This article belongs to the Special Issue Organic Solar Cell and Optoelectronic Functional Materials)
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