4.6 Article

Highly Air-Stable Carbon-Based α-CsPbl3 Perovskite Solar Cells with a Broadened Optical Spectrum

期刊

ACS ENERGY LETTERS
卷 3, 期 8, 页码 1824-+

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acsenergylett.8b00820

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资金

  1. Young Talent of Zhuoyue Program of Beihang University
  2. National Natural Science Foundation of China [21603010, 51672015]
  3. Beijing Natural Science Foundation [2182031]
  4. 111 Project [B17002]

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Inorganic cesium lead halide perovskites with superb thermal stability show promise to fabricate long-term operational photovoltaic devices. However, the cubic phase (alpha) of CsPbI3 with an appropriate band gap is unstable in air. We discover that highly stable alpha-CsPbI3 can be obtained in dry air (temperature: 20-30 degrees C; humidity: 10-20%) by replacing PbI2 with HPbI3 in a one-step deposition solution. Furthermore, the band gap of HPbI3-processed alpha-CsPbI3 is advantageously reduced from 1.72 to 1.68 eV due to the existence of tensile lattice strain. By employing such an alpha-CsPbI3 film in carbon-based perovskite solar cells (C-PSCs), a power conversion efficiency (PCE) of 9.5% is achieved, which is a record value for the alpha-CsPbI3 PSCs without hole transport material. Most importantly, over 90% of the initial PCE is retained for nonencapsulated devices after 3000 h of storage in dry air. Therefore, HPbI3 based one-step deposition presents a promising strategy to prepare high-performance and air-stable alpha-CsPbI3 PSCs.

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