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Charge-Carrier Balance for Highly Efficient Inverted Planar Heterojunction Perovskite Solar Cells

  • Ke Chen
  • , Qin Hu
  • , Tanghao Liu
  • , Lichen Zhao
  • , Deying Luo
  • , Jiang Wu
  • , Yifei Zhang
  • , Wei Zhang
  • , Feng Liu
  • , Thomas P. Russell
  • , Rui Zhu*
  • , Qihuang Gong
  • *Corresponding author for this work
  • Peking University
  • Collaborative Innovation Center of Quantum Matter
  • Lawrence Berkeley National Laboratory
  • University of Lincoln
  • Shanghai Jiao Tong University
  • University of Massachusetts
  • Shanxi University

Research output: Contribution to journalArticlepeer-review

Abstract

The DMF-treated PEDOT:PSS and PMMA-modified PCBM were employed as the HSC and ESC, respectively, to establish charge-carrier balance in the inverted PHJ PSCs. The DMF treatment helps to enhance the conductivity of PEDOT:PSS film and reduce its surface roughness, which facilitates the interfacial contact between the perovskite layer and HSC. PEDOT:PSS was spin coated onto a clean ITO substrate at 3000 rpm for 30 s and annealed at 130°C for 20 min in the air. After it was cooled down to room temperature, 60 μL DMF was dropped onto the film for 5 s, and then spun off at 3000 rpm for 30 s. Next, MAI and the dehydrated Pb(Ac)2 were dissolved in anhydrous DMF at a 3:1 molar ratio with 1.0 mol% MABr additive. The precursor solution was spin coated onto the PEDOT:PSS layer at 4000 rpm for 40 s and then compact and well-crystallized CH3NH3PbI3 films (300 nm) were obtained. The interface engineering of HSC and ESC resulted in accelerated and balanced charge-carrier transport in the device, leading to the suppressed charge-carrier accumulation and recombination.

Original languageEnglish
Pages (from-to)10718-10724
Number of pages7
JournalAdvanced Materials
Volume28
Issue number48
DOIs
StatePublished - Dec 2016
Externally publishedYes

Keywords

  • charge-carrier balance
  • interface engineering
  • inverted planar heterojunction
  • perovskite solar cells

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