Published November 18, 2016 | Version v1
Miscellaneous Restricted

Interfacial stability and degradation in organic photovoltaic solar cells

Description

Organic photovoltaic (OPV) solar cells show great promise but suffer from short operating lifetimes. This study examines the role that the selection of materials for the hole extraction interface in inverted OPV devices plays in determining the lifetime of a device. In the first part of the study, the effects of thermal degradation were examined. It was found that devices containing MoO3 HTLs and silver top electrodes exhibit an open-circuit voltage (VOC)/fill factor (FF)-driven mechanism. Physical characterisation experiments showed that, with heating, the silver electrode undergoes de-wetting. With thin electrodes this can result in the catastrophic failure of the device. A fracture analysis study found that silver-containing devices experience an increase in adhesion of their top layers to the active layer due to interdiffusion between the layers. This interdiffusion may be related to the loss of VOC and FF in Ag/MoO3 devices through diffused species forming charge traps in the active layer. In the second part of the study, the effects of photodegradation in different atmospheres were studied. Some material-dependent effects were observed when the devices were aged in an inert atmosphere, including variations in projected lifetime. The effect of oxygen was to greatly accelerate degradation, and remove any of the material-dependence observed in the inert experiment, while humidity led to a substantial increase in the degradation rate of devices containing PEDOT:PSS (poly(3,4-ethylenedioxy-thiophene) polystyrene sulfonate). This study underlines the importance of considering device lifetime in device design, and choosing materials to minimise degradation. (author)

Abstract (French)

Les durees de vie des cellules solaires photovoltaiques organiques (OPV) doivent etre ameliorees afin que cette technologie puisse etre commercialisee sur une grande echelle. Ce travail etudie l'influence de la selection des materiaux pour l'interface superieure sur la degradation des OPV inversees. La premiere partie de cette etude s'occupe des effets de la degradation thermale. Il a ete constate que la tension de circuit-ouvert (VOC) et le facteur de forme (FF) diminuent lors du vieillissement des OPVs ayant une HTL de MoO3 et une electrode d'argent. Des experiences de caracterisation physique ont mis en evidence que les electrodes d'argent demouillent lors du vieillissement thermique ce qui peut conduire a la mort rapide des cellules avec des electrodes minces. Des analyses de rupture ont egalement faites. Il a ete constate que l'adhesion d'interface superieure augmente fortement dans les echantillons avec electrode en argent due a la diffusion de matiere, et il est possible qu'il y ait une relation entre cette diffusion et la perte de VOC et FF. Dans la deuxieme partie, les effets de la lumiere sur la degradation et l'influence de la presence d'oxygene ou d'humidite ont ete etudies. Quelques effets des materiaux ont ete notes, en particulier sur la duree de vie. L'oxygene a eu l'effet d'accelerer notablement la degradation, et aucune difference n'a ete notee selon les materiaux utilises. En revanche, l'humidite a eu un effet prononce sur les echantillons avec certains HTLs. Ce travail souligne l'importance de penser a la duree de vie quand on designe les dispositifs OPV, en particulier pour selectionner des materiaux appropries afin d'optimiser la duree de vie. (auteur)

Files

Restricted

The record is publicly accessible, but files are restricted to users with access.

Additional details

Additional titles

Original title (English)
La stabilite et le vieillissement aux interfaces des cellules solaires organiques photovoltaiques

Publishing Information

Imprint Pagination
182 p.
Report number
FRNC-TH--15135

Optional Information

Notes
206 refs.; Available from the INIS Liaison Officer for France, see the INIS website for current contact and E-mail addresses