Defect Calculation by Combined SCAN and Hybrid Functional in γ-CsPbI<sub>3</sub>

ORAL

Abstract

γ-CsPbI3 solar cells have achieved promising efficiencies, yet the quantitative understanding of their defect properties is limited due to severe computational challenges of hybrid functionals. We have discovered an algorithm to improve the convergence speed by a combination of structural relaxation with strongly constrained and appropriately normed (SCAN) Meta-generalized-gradient approximation (Meta-GGA) functional and further ionic and electronic calculations with Heyd-Scuseria-Ernzerhof (HSE) hybrid functional. The static HSE calculation with SCAN results as inputs is qualitatively reliable in defect calculations, different from one-ionic step HSE calculation based on GGA inputs. Contradictory to previous GGA defect results, a suppressed bipolar conductivity by p-type VCs and VPb, and n-type CsI is found. Additionally, stable bipolar defects Iint and CsPb, featured by strong bond orbital coupling or structural deformation, detrimentally serve as carrier-traps. Such a strengthened bond orbital coupling in γ-CsPbI3 causes more defect charge states than organic perovskites with larger lattice constants.

*This work was supported by the start-up funding and PIEF and CRIMS Grant (No. 3133288) at The Chinese university of Hong Kong (CUHK). Financial support of General Research Fund (Grant No. 14307018 14301318 14307219) from Research Grants Council in Hong Kong is gratefully acknowledged.

Presenters

  • Shengyuan Wang

    • Chinese University of Hong Kong

Authors

  • Shengyuan Wang

    • Chinese University of Hong Kong
  • Kin Fai Tse

    • Chinese University of Hong Kong
  • Alena Boyko

    • Chinese University of Hong Kong
  • Junyi Zhu

    • Chinese University of Hong Kong