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Identification of the Origin of Ultralow Dark Currents in Organic Photodiodes

Authors :
Ma, Xiao
Bin, Haijun
van Gorkom, Bas T.
van der Pol, Tom P.A.
Dyson, Matthew J.
Weijtens, Christ H.L.
Fattori, Marco
Meskers, Stefan C.J.
van Breemen, Albert J.J.M.
Tordera, Daniel
Janssen, René A.J.
Gelinck, Gerwin H.
Ma, Xiao
Bin, Haijun
van Gorkom, Bas T.
van der Pol, Tom P.A.
Dyson, Matthew J.
Weijtens, Christ H.L.
Fattori, Marco
Meskers, Stefan C.J.
van Breemen, Albert J.J.M.
Tordera, Daniel
Janssen, René A.J.
Gelinck, Gerwin H.
Source :
Advanced Materials vol.35 (2023) date: 2023-02-23 nr.8 [ISSN 0935-9648]
Publication Year :
2023

Abstract

Organic bulk heterojunction photodiodes (OPDs) attract attention for sensing and imaging. Their detectivity is typically limited by a substantial reverse bias dark current density (Jd). Recently, using thermal admittance or spectral photocurrent measurements, Jd has been attributed to thermal charge generation mediated by mid-gap states. Here, the temperature dependence of Jd in state-of-the-art OPDs is reported with Jd down to 10−9 mA cm−2 at −0.5 V bias. For a variety of donor-acceptor bulk-heterojunction blends it is found that the thermal activation energy of Jd is lower than the effective bandgap of the blends, by ca. 0.3 to 0.5 eV, but higher than expected for mid-gap states. Ultra-sensitive sub-bandgap photocurrent spectroscopy reveals that the minimum photon energy for optical charge generation in OPDs correlates with the dark current thermal activation energy. The dark current in OPDs is attributed to thermal charge generation at the donor-acceptor interface mediated by intra-gap states near the band edges.

Details

Database :
OAIster
Journal :
Advanced Materials vol.35 (2023) date: 2023-02-23 nr.8 [ISSN 0935-9648]
Notes :
Ma, Xiao
Publication Type :
Electronic Resource
Accession number :
edsoai.on1373803327
Document Type :
Electronic Resource