Defect Engineering and Emission Tuning of Wide-Bandgap MAPbCl3 Perovskite

  • Zihao Li
  • , Yuqing Luo
  • , Zelong Chen
  • , Haidong Liang
  • , Tongtong Lu
  • , Xiaobin Rao
  • , Aniruddha Ray
  • , Ahmed L. Abdelhady
  • , Chengyuan Yang
  • , Urko Petralanda
  • , Andrew Bettiol
  • , Mark Breese
  • , Zhiya Dang
  • , Pingqi Gao

    Research output: Contribution to journalArticlepeer-review

    4 Scopus citations

    Abstract

    Lead-chloride perovskites are promising candidates for optoelectronic applications, such as visible-blind UV photodetection. It remains unclear how the deep defects in this wide-bandgap material impact the carrier recombination dynamics. In this work, we study the defect properties of MAPbCl3 (MA = CH3NH3) based on photoluminescence (PL) measurements. Our investigations show that apart from the intrinsic emission, four sub-bandgap emissions emerge, which are very likely to originate from the radiative recombination of excitons bound to several intrinsic vacancy and interstitial defects. The intensity of various emission features can be tuned by adjusting the type and ratio of precursors used during synthesis. Our study not only provides important insights into the defect property and carrier recombination mechanism in this class of material but also demonstrates efficient strategies for defect passivation and engineering, paving the way for further development of lead-chloride perovskite-based optoelectronic devices.

    Original languageBritish English
    Pages (from-to)5689-5695
    Number of pages7
    JournalJournal of Physical Chemistry Letters
    Volume15
    Issue number21
    DOIs
    StatePublished - 30 May 2024

    Fingerprint

    Dive into the research topics of 'Defect Engineering and Emission Tuning of Wide-Bandgap MAPbCl3 Perovskite'. Together they form a unique fingerprint.

    Cite this