AI Article Synopsis

  • Understanding the energy level alignment at metal halide perovskite (MHP) interfaces is crucial for optimizing their use in optoelectronic devices, but the inherent electronic properties of MHPs remain controversial.* -
  • Recent photoemission experiments show that methylammonium lead triiodide (MAPbI) acts as an intrinsic semiconductor without oxygen, but the introduction of oxygen leads to significant p-doping, affecting the position of the Fermi level.* -
  • Oxygen can reversibly diffuse into the MAPbI material over extended timescales, and it appears to substitute for iodine vacancies, which emphasizes the need for careful handling of oxygen during experimentation to ensure accurate electronic property analyses.*

Article Abstract

Understanding and controlling the energy level alignment at interfaces with metal halide perovskites (MHPs) is essential for realizing the full potential of these materials for use in optoelectronic devices. To date, however, the basic electronic properties of MHPs are still under debate. Particularly, reported Fermi level positions in the energy gap vary from indicating strong n- to strong p-type character for nominally identical materials, raising serious questions about intrinsic and extrinsic defects as dopants. ​In this work, photoemission experiments demonstrate that thin films of the prototypical methylammonium lead triiodide (MAPbI ) behave like an intrinsic semiconductor in the absence of oxygen. Oxygen is then shown to be able to reversibly diffuse into and out of the MAPbI bulk, requiring rather long saturation timescales of ≈1 h (in: ambient air) and over 10 h (out: ultrahigh vacuum), for few 100 nm thick films. Oxygen in the bulk leads to pronounced p-doping, positioning the Fermi level universally ≈0.55 eV above the valence band maximum. The key doping mechanism is suggested to be molecular oxygen substitution of iodine vacancies, supported by density functional theory calculations. This insight rationalizes previous and future electronic property studies of MHPs and calls for meticulous oxygen exposure protocols.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11468336PMC
http://dx.doi.org/10.1002/adma.202100211DOI Listing

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