Radiation tolerance and self-healing in triple halide perovskite solar cells

Author:

Afshari Hadi1ORCID,Chacon Sergio A.1,Sourabh Shashi1ORCID,Byers Todd A.2ORCID,Whiteside Vincent R.1ORCID,Crawford Rose1,Rout Bibhudutta2ORCID,Eperon Giles E.3ORCID,Sellers Ian R.1ORCID

Affiliation:

1. Department of Physics and Astronomy, University of Oklahoma 1 , Norman, Oklahoma 73019, USA

2. Department of Physics, University of North Texas 2 , Denton, Texas 76203, USA

3. Swift Solar 3 , San Carlos, California 94070, USA

Abstract

The high tolerance and stability of triple halide perovskite solar cells is demonstrated in practical space conditions at high irradiation levels. The solar cells were irradiated for a range of proton energies (75 keV, 300 keV, and 1 MeV) and fluences (up to 4 × 1014 p/cm2). The fluences of the energy proton irradiations were varied to induce the same amount of vacancies in the absorber layer due to non-ionizing nuclear energy loss (predominant at <300 keV) and electron ionization loss (predominant at >300 keV). While proton irradiation of the solar cells initially resulted in degradation of the photovoltaic parameters, self-healing was observed after two months where the performance of the devices was shown to return to their pristine operation levels. Their ability to recover upon radiation exposure supports the practical potential of perovskite solar cells for next-generation space missions.

Funder

National Aeronautics and Space Administration

National Science Foundation

Publisher

AIP Publishing

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