Characterization of perovskite solar cells : towards a reliable measurement protocol

dc.contributor.authorZimmermann, Eugen
dc.contributor.authorWong, Ka Kan
dc.contributor.authorMüller, Michael
dc.contributor.authorHu, Hao
dc.contributor.authorEhrenreich, Philipp
dc.contributor.authorKohlstädt, Markus
dc.contributor.authorWürfel, Uli
dc.contributor.authorMastroianni, Simone
dc.contributor.authorPfadler, Thomas
dc.contributor.authorSchmidt-Mende, Lukas
dc.date.accessioned2016-11-18T13:38:59Z
dc.date.available2016-11-18T13:38:59Z
dc.date.issued2016-08-19eng
dc.description.abstractLead halide perovskite solar cells have shown a tremendous rise in power conversion efficiency with reported record efficiencies of over 20% making this material very promising as a low cost alternative to conventional inorganic solar cells. However, due to a differently severe “hysteretic” behaviour during current density-voltage measurements, which strongly depends on scan rate, device and measurement history, preparation method, device architecture, etc., commonly used solar cell measurements do not give reliable or even reproducible results. For the aspect of commercialization and the possibility to compare results of different devices among different laboratories, it is necessary to establish a measurement protocol which gives reproducible results. Therefore, we compare device characteristics derived from standard current density-voltage measurements with stabilized values obtained from an adaptive tracking of the maximum power point and the open circuit voltage as well as characteristics extracted from time resolved current density-voltage measurements. Our results provide insight into the challenges of a correct determination of device performance and propose a measurement protocol for a reliable characterisation which is easy to implement and has been tested on varying perovskite solar cells fabricated in different laboratories.eng
dc.description.versionpublishedeng
dc.identifier.doi10.1063/1.4960759eng
dc.identifier.ppn479980020
dc.identifier.urihttps://kops.uni-konstanz.de/handle/123456789/35963
dc.language.isoengeng
dc.rightsAttribution 4.0 International
dc.rights.urihttp://creativecommons.org/licenses/by/4.0/
dc.subjectperovskite solar cells, measurement protocoleng
dc.subject.ddc530eng
dc.titleCharacterization of perovskite solar cells : towards a reliable measurement protocoleng
dc.typeJOURNAL_ARTICLEeng
dspace.entity.typePublication
kops.citation.bibtex
@article{Zimmermann2016-08-19Chara-35963,
  year={2016},
  doi={10.1063/1.4960759},
  title={Characterization of perovskite solar cells : towards a reliable measurement protocol},
  number={9},
  volume={4},
  journal={APL Materials},
  author={Zimmermann, Eugen and Wong, Ka Kan and Müller, Michael and Hu, Hao and Ehrenreich, Philipp and Kohlstädt, Markus and Würfel, Uli and Mastroianni, Simone and Pfadler, Thomas and Schmidt-Mende, Lukas},
  note={Article Number: 091901}
}
kops.citation.iso690ZIMMERMANN, Eugen, Ka Kan WONG, Michael MÜLLER, Hao HU, Philipp EHRENREICH, Markus KOHLSTÄDT, Uli WÜRFEL, Simone MASTROIANNI, Thomas PFADLER, Lukas SCHMIDT-MENDE, 2016. Characterization of perovskite solar cells : towards a reliable measurement protocol. In: APL Materials. 2016, 4(9), 091901. eISSN 2166-532X. Available under: doi: 10.1063/1.4960759deu
kops.citation.iso690ZIMMERMANN, Eugen, Ka Kan WONG, Michael MÜLLER, Hao HU, Philipp EHRENREICH, Markus KOHLSTÄDT, Uli WÜRFEL, Simone MASTROIANNI, Thomas PFADLER, Lukas SCHMIDT-MENDE, 2016. Characterization of perovskite solar cells : towards a reliable measurement protocol. In: APL Materials. 2016, 4(9), 091901. eISSN 2166-532X. Available under: doi: 10.1063/1.4960759eng
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kops.relation.uniknProjectTitleBioMatS-07: Poröse Superkristalle durch biomimetische Strukturbildung aus polaren Nanopartikeln und deren Einsatz für effiziente Solarzellen (SuperSol)eng
kops.sourcefieldAPL Materials. 2016, <b>4</b>(9), 091901. eISSN 2166-532X. Available under: doi: 10.1063/1.4960759deu
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