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Application of bromide-iodide lead perovskite thin film as a copper-free back contact layer for CdTe solar cells

  • Biao Zhou
  • , Fan Zhang
  • , Junlin Zhang
  • , Xiutao Yang
  • , Kelin Li
  • , Guanggen Zeng*
  • , Bing Li
  • , Jingquan Zhang
  • , Dewei Zhao
  • , Iordania Constantinou
  • , Xia Hao
  • , Smagul Karazhanov
  • , Lianghuan Feng
  • *Corresponding author for this work
  • College of Materials Science and Engineering
  • Sichuan University
  • Technical University of Braunschweig
  • Institute for Energy Technology

Research output: Contribution to journalArticlepeer-review

5 Citations (Scopus)

Abstract

In this study, bromide-iodide lead perovskite (CH3NH3Pb(I1−xBrx)3) thin films were fabricated and applied as copper-free back contact layers for CdTe solar cells. The results reveal that the open-circuit voltage (Voc) and fill factor (FF) of the CdTe solar cells are greatly enhanced by the utilization of perovskite back contact layers. This is mainly due to the evidently reduced charge transportation barrier at the back contact, which is verified by temperature-dependent current–voltage (J-V-T) and apparent quantum efficiency (AQE) measurements. Specifically, after the application of perovskite back contact layer, the best-performing device shows 15.80% improvement in efficiency (from 10.82 to 12.53%), with Voc and FF increasing by 3.94% and 6.91%, respectively. Besides, the overall uniformity of the solar cells is also improved by the perovskite back contact, suggested by laser beam induced current (LBIC) results. Further simulation results confirm the experimental results and clarify the optimized cell performance by perovskite back contact layer in terms of both energy band alignment and charge carriers’ recombination. In addition, in the simulation section, we have also investigated the effect of the bandgap, thickness and doping level of perovskite and the doping level of CdTe on the cell performances. The experiments and the numerical simulation reported in this work suggest perovskite a potential copper-free back contact layer for the fabrication of efficient CdTe solar cells.

Original languageEnglish
Pages (from-to)832-842
Number of pages11
JournalSolar Energy
Volume230
DOIs
Publication statusPublished - Dec 2021
Externally publishedYes

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 7 - Affordable and Clean Energy
    SDG 7 Affordable and Clean Energy

Keywords

  • CdTe solar cells
  • Copper-free back contact
  • Numerical simulation
  • Perovskite thin film

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