Role of defects in MAPbI<sub>3</sub> to modulate optical absorption, and solar efficiency

ORAL

Abstract

Methylammonium lead halide (MAPbI3) perovskite has emerged as one of the frontier optoelectronic semiconductors. To avoid lead-toxicity, the role of Sn-substitution and Pb-vacancy (Pb-■) is addressed in regulating the stability and solar cell efficiency of MAPb1-X-YSnXYI3 perovskite using hybrid density functional theory (DFT). We find, to reduce the Pb-content from pristine MAPbI3, Sn-substitution has favorable thermodynamic stability than Pb-■. High optical absorption coefficient (red shifted) and maximum solar cell efficiency are obtained in
MAPb1-X-YSnXYI3 for 0 ≤ X ≤ 0.5. The role of spin-orbit coupling (SOC) and electron self-interaction error are examined carefully. Despite SOC has a significant role in artificially shifting the electronic bands, it doesn't affect the relative hierarchy of formation energies of different defected configurations. However, electron self-interaction plays an important role in determining the same. We find a local/semi-local functional (e.g. PBE) gives a completely opposite trend to determine thermodynamic stability w.r.t HSE06+SOC.

*PB acknowledge UGC, India, for the senior research fellowship [grant no. 20/12/2015 (ii) EUV] and High Performance
Computing (HPC) facility at IIT Delhi for computational resources.

Presenters

  • Pooja Basera

    • Physics, Indian Institute of Technology, IIT Delhi

Authors

  • Pooja Basera

    • Physics, Indian Institute of Technology, IIT Delhi
  • Saswata Bhattacharya

    • Physics, Indian Institute of Technology Delhi
    • Department of Physics, Indian Institute of Technology Delhi
    • Indian Inst of Tech-New Delhi
    • Dept of Physics, Indian Istitute of Technology Delhi, New Delhi
    • Physics, Indian Institute of Technology, IIT Delhi