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CMP
Credit: Jack Hobhouse

Jarla Thiesbrummel

Visitor

Research theme

  • Photovoltaics and nanoscience

Sub department

  • Condensed Matter Physics
jarla.thiesbrummel@physics.ox.ac.uk
Robert Hooke Building, room G29
  • About
  • Publications

Quantification of Efficiency Losses Due to Mobile Ions in Perovskite Solar Cells via Fast Hysteresis Measurements

Solar RRL Wiley 6:4 (2022)

Authors:

Vincent M Le Corre, Jonas Diekmann, Francisco Peña-Camargo, Jarla Thiesbrummel, Nurlan Tokmoldin, Emilio Gutierrez-Partida, Karol Pawel Peters, Lorena Perdigón-Toro, Moritz H Futscher, Felix Lang, Jonathan Warby, Henry J Snaith, Dieter Neher, Martin Stolterfoht
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Revealing the doping density in perovskite solar cells and its impact on device performance

ArXiv 2201.09664 (2022)

Authors:

Francisco Peña-Camargo, Jarla Thiesbrummel, Hannes Hempel, Artem Musiienko, Vincent M Le Corre, Jonas Diekmann, Jonathan Warby, Thomas Unold, Felix Lang, Dieter Neher, Martin Stolterfoht
Details from ArXiV

Quantification of Efficiency Losses Due to Mobile Ions in Perovskite Solar Cells via Fast Hysteresis Measurements

Sol. RRL, 6: 2100772

Authors:

Vincent M. Le Corre, Jonas Diekmann, Francisco Peña-Camargo, Jarla Thiesbrummel, Nurlan Tokmoldin, Emilio Gutierrez-Partida, Karol Pawel Peters, Lorena Perdigón-Toro, Moritz H. Futscher, Felix Lang, Jonathan Warby, Henry J. Snaith, Dieter Neher, Martin Stolterfoht

Abstract:

Perovskite semiconductors differ from most inorganic and organic semiconductors due to the presence of mobile ions in the material. Although the phenomenon is intensively investigated, important questions such as the exact impact of the mobile ions on the steady-state power conversion efficiency (PCE) and stability remain. Herein, a simple method is proposed to estimate the efficiency loss due to mobile ions via “fast-hysteresis” measurements by preventing the perturbation of mobile ions out of their equilibrium position at fast scan speeds ( ≈ 1000 V s−1). The “ion-free” PCE is between 1% and 3% higher than the steady-state PCE, demonstrating the importance of ion-induced losses, even in cells with low levels of hysteresis at typical scan speeds ( ≈ 100 mV s−1). The hysteresis over many orders of magnitude in scan speed provides important information on the effective ion diffusion constant from the peak hysteresis position. The fast-hysteresis measurements are corroborated by transient charge extraction and capacitance measurements and numerical simulations, which confirm the experimental findings and provide important insights into the charge carrier dynamics. The proposed method to quantify PCE losses due to field screening induced by mobile ions clarifies several important experimental observations and opens up a large range of future experiments.
More details from the publisher

Universal Current Losses in Perovskite Solar Cells Due to Mobile Ions

Advanced Energy Materials Wiley 11:34 (2021)

Authors:

Jarla Thiesbrummel, Vincent M Le Corre, Francisco Peña‐Camargo, Lorena Perdigón‐Toro, Felix Lang, Fengjiu Yang, Max Grischek, Emilio Gutierrez‐Partida, Jonathan Warby, Michael D Farrar, Suhas Mahesh, Pietro Caprioglio, Steve Albrecht, Dieter Neher, Henry J Snaith, Martin Stolterfoht
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Efficient Quantum Algorithms for GHZ and W States, and Implementation on the IBM Quantum Computer

Advanced Quantum Technologies Wiley 2:5-6 (2019)

Authors:

Diogo Cruz, Romain Fournier, Fabien Gremion, Alix Jeannerot, Kenichi Komagata, Tara Tosic, Jarla Thiesbrummel, Chun Lam Chan, Nicolas Macris, Marc‐André Dupertuis, Clément Javerzac‐Galy
More details from the publisher
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