Skip to main navigation Skip to search Skip to main content

Countdown to perovskite space launch: Guidelines to performing relevant radiation-hardness experiments

  • Ahmad R. Kirmani
  • , Brandon K. Durant
  • , Jonathan Grandidier
  • , Nancy M. Haegel
  • , Michael D. Kelzenberg
  • , Yao M. Lao
  • , Michael D. McGehee
  • , Lyndsey McMillon-Brown
  • , David P. Ostrowski
  • , Timothy J. Peshek
  • , Bibhudutta Rout
  • , Ian R. Sellers
  • , Mark Steger
  • , Don Walker
  • , David M. Wilt
  • , Kaitlyn T. VanSant
  • , Joseph M. Luther
  • National Renewable Energy Laboratory
  • University of Oklahoma
  • Jet Propulsion Laboratory, California Institute of Technology
  • California Institute of Technology
  • Aerospace Corporation
  • University of Colorado Boulder
  • NASA Glenn Research Center
  • University of North Texas
  • Air Force Research Laboratory

Research output: Contribution to journalArticlepeer-review

121 Scopus citations

Abstract

Perovskite photovoltaics (PVs) are under intensive development for promise in terrestrial energy production. Soon, the community will find out how much of that promise may become reality. Perovskites also open new opportunities for lower cost space power. However, radiation tolerance of space environments requires appropriate analysis of relevant devices irradiated under representative radiation conditions. We present guidelines designed to rigorously test the radiation tolerance of perovskite PVs. We review radiation conditions in common orbits, calculate nonionizing and ionizing energy losses (NIEL and IEL) for perovskites, and prioritize proton radiation for effective nuclear interactions. Low-energy protons (0.05–0.15 MeV) create a representative uniform damage profile, whereas higher energy protons (commonly used in ground-based evaluation) require significantly higher fluence to accumulate the equivalent displacement damage dose due to lower scattering probability. Furthermore, high-energy protons may “heal” devices through increased electronic ionization. These procedural guidelines differ from those used to test conventional semiconductors.

Original languageEnglish
Pages (from-to)1015-1031
Number of pages17
JournalJoule
Volume6
Issue number5
DOIs
StatePublished - May 18 2022

Keywords

  • electronic ionization
  • ionizing energy loss
  • nonionizing energy loss
  • nuclear displacements
  • perovskites
  • proton irradiation
  • radiation tolerance
  • radiation-matter interactions
  • solar cells
  • space photovoltaics

Fingerprint

Dive into the research topics of 'Countdown to perovskite space launch: Guidelines to performing relevant radiation-hardness experiments'. Together they form a unique fingerprint.

Cite this