Regulating Surface Heterogeneity Maximizes Photovoltage and Operational Stability in Tin-Lead Perovskite Solar Cells

  • Gunasekaran, Rajendra Kumar; 
  • Jung, Jina; 
  • Yang, Sung Woong; 
  • Im, Doyun; 
  • Choi, Won Chang; 
  • ... Lee, Sangwook; 
  • 외 1명
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초록

We present a surface reconstruction strategy for tin-lead perovskites, effectively addressing the issue of oxidized Sn fragments on surfaces and interfaces. Our surface treatment involving postfabrication iodide supplementation effectively regulates undesired surface binding states and reconstructs the compositional gradient. Through surface-sensitive and depth-resolved analysis, we unveil a strong correlation among surface compositional disorder, photovoltage, and operational stability in tin-lead perovskites. Surface-reconstructed perovskite films demonstrate improved carrier lifetime, reduced defect density, and higher recombination resistance compared with untreated films. As a result, devices utilizing surface-reconstructed perovskites exhibit remarkable performance with high power conversion efficiency (up to 23%) and open-circuit voltage (0.88 V), alongside enhanced operational stability compared to untreated counterparts. These insights into the surface vulnerabilities of mixed tin-lead perovskites, coupled with the underlying chemistry of surface passivation, pave the way for significant advancements in narrow-band gap perovskite solar cells.

키워드

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제목
Regulating Surface Heterogeneity Maximizes Photovoltage and Operational Stability in Tin-Lead Perovskite Solar Cells
저자
Gunasekaran, Rajendra Kumar; Jung, Jina; Yang, Sung Woong; Im, Doyun; Choi, Won Chang; Yun, Yeonghun; Lee, Sangwook
DOI
10.1021/acsenergylett.3c02402
발행일
2023-12-08
유형
Article
저널명
ACS ENERGY LETTERS
권
9
호
1
페이지
102 ~ 109