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Low-Temperature Solution-Processed Electron Transport Layers for Inverted Polymer Solar Cells

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Title: Low-Temperature Solution-Processed Electron Transport Layers for Inverted Polymer Solar Cells
Authors: McLachlan, MA
Faria, JCD
Morbidoni, M
Porte, Y
Burgess, CH
Harrabi, K
Item Type: Journal Article
Abstract: © 2016 WILEY-VCH Verlag GmbH & Co. KGaA, WeinheimProcessing temperature is highlighted as a convenient means of controlling the optical and charge transport properties of solution processed electron transport layers (ETLs) in inverted polymer solar cells. Using the well-studied active layer – poly(3-hexylthiophene-2,5-diyl):indene-C60 bisadduct – the influence of ETL processing temperatures from 25 to 450 °C is shown, reporting the role of crystallinity, structure, charge transport, and Fermi level (EF) on numerous device performance characteristics. It has been determined that an exceptionally low temperature processed ETL (110 °C) increases device power conversion efficiency by a factor greater than 50% compared with a high temperature (450 °C) processed ETL. Modulations in device series and shunt resistance, induced by changes in the ETL transport properties, are observed in parallel to significant changes in device open circuit voltage attributed to changes on the EF of the ETLs. This work highlights the importance of interlayer control in multilayer photovoltaic devices and presents a convenient material compatible with future flexible and roll-to-roll processes.
Issue Date: 5-Apr-2016
Date of Acceptance: 5-Apr-2016
URI: http://hdl.handle.net/10044/1/31093
DOI: https://dx.doi.org/10.1002/aelm.201600008
ISSN: 2199-160X
Publisher: Wiley
Journal / Book Title: Advanced Electronic Materials
Volume: 2
Issue: 6
Copyright Statement: This is the peer reviewed version of the following article: Zhang, J., Faria, J. C. D., Morbidoni, M., Porte, Y., Burgess, C. H., Harrabi, K. and McLachlan, M. A. (2016), Low-Temperature Solution-Processed Electron Transport Layers for Inverted Polymer Solar Cells. Adv. Electron. Mater., 1600008, which has been published in final form at https://dx.doi.org/10.1002/aelm.201600008. This article may be used for non-commercial purposes in accordance With Wiley Terms and Conditions for self-archiving.
Sponsor/Funder: Stichting Dutch Polymer Institute
Kaust
Engineering & Physical Science Research Council (EPSRC)
Funder's Grant Number: DPI/2011-11414
N/A
EP/K030760/1
Publication Status: Published
Article Number: 1600008
Appears in Collections:Materials
Faculty of Natural Sciences
Faculty of Engineering