The Joule heating problem in silver nanowire transparent electrodes
KHALIGH, H. H.
Institute for Nanotechnology [Waterloo]
Department of Electrical and Computer Engineering [Waterloo] [ECE]
Institute for Nanotechnology [Waterloo]
Department of Electrical and Computer Engineering [Waterloo] [ECE]
KHOSROPOUR, Alireza
Institute for Nanotechnology [Waterloo]
Department of Electrical and Computer Engineering [Waterloo] [ECE]
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Institute for Nanotechnology [Waterloo]
Department of Electrical and Computer Engineering [Waterloo] [ECE]
KHALIGH, H. H.
Institute for Nanotechnology [Waterloo]
Department of Electrical and Computer Engineering [Waterloo] [ECE]
Institute for Nanotechnology [Waterloo]
Department of Electrical and Computer Engineering [Waterloo] [ECE]
KHOSROPOUR, Alireza
Institute for Nanotechnology [Waterloo]
Department of Electrical and Computer Engineering [Waterloo] [ECE]
Institute for Nanotechnology [Waterloo]
Department of Electrical and Computer Engineering [Waterloo] [ECE]
MADEIRA, Alexandra
Institute for Nanotechnology [Waterloo]
Department of Electrical and Computer Engineering [Waterloo] [ECE]
Institut de Chimie de la Matière Condensée de Bordeaux [ICMCB]
Institute for Nanotechnology [Waterloo]
Department of Electrical and Computer Engineering [Waterloo] [ECE]
Institut de Chimie de la Matière Condensée de Bordeaux [ICMCB]
POPE, Michael A.
Institute for Nanotechnology [Waterloo]
Department of Chemical Engineering [Waterloo]
Institute for Nanotechnology [Waterloo]
Department of Chemical Engineering [Waterloo]
GOLDTHORPE, Irene A.
Department of Electrical and Computer Engineering [Waterloo] [ECE]
Institute for Nanotechnology [Waterloo]
< Leer menos
Department of Electrical and Computer Engineering [Waterloo] [ECE]
Institute for Nanotechnology [Waterloo]
Idioma
en
Article de revue
Este ítem está publicado en
Nanotechnology. 2017, vol. 28, n° 42, p. 425703
Institute of Physics
Resumen en inglés
Silver nanowire transparent electrodes have shown considerable potential to replace conventional transparent conductive materials. However, in this report we show that Joule heating is a unique and serious problem with ...Leer más >
Silver nanowire transparent electrodes have shown considerable potential to replace conventional transparent conductive materials. However, in this report we show that Joule heating is a unique and serious problem with these electrodes. When conducting current densities encountered in organic solar cells, the average surface temperature of indium tin oxide (ITO) and silver nanowire electrodes, both with sheet resistances of 60 ohms/square, remains below 35 °C. However, in contrast to ITO, the temperature in the nanowire electrode is very non-uniform, with some localized points reaching temperatures above 250 °C. These hotspots accelerate nanowire degradation, leading to electrode failure after 5 days of continuous current flow. We show that graphene, a commonly used passivation layer for these electrodes, slows nanowire degradation and creates a more uniform surface temperature under current flow. However, the graphene does not prevent Joule heating in the nanowires and local points of high temperature ultimately shift the failure mechanism from nanowire degradation to melting of the underlying plastic substrate. In this paper, surface temperature mapping, lifetime testing under current flow, post-mortem analysis, and modelling illuminate the behaviour and failure mechanisms of nanowires under extended current flow and provide guidelines for managing Joule heating.< Leer menos
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