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  • Highly Efficient and Stable...
    He, Qingquan; Worku, Michael; Liu, He; Lochner, Eric; Robb, Alex J.; Lteif, Sandrine; Vellore Winfred, J. S. Raaj; Hanson, Kenneth; Schlenoff, Joseph B.; Kim, Bumjoon J.; Ma, Biwu

    Angewandte Chemie (International ed.), 11/2020, Letnik: 60, Številka: 5
    Journal Article

    Abstract Surface passivation of perovskite solar cells (PSCs) using a low‐cost industrial organic pigment quinacridone (QA) is presented. The procedure involves solution processing a soluble derivative of QA, N , N ‐bis(tert‐butyloxycarbonyl)‐quinacridone (TBOC‐QA), followed by thermal annealing to convert TBOC‐QA into insoluble QA. With halide perovskite thin films coated by QA, PSCs based on methylammonium lead iodide (MAPbI 3 ) showed significantly improved performance with remarkable stability. A PCE of 21.1 % was achieved, which is much higher than 18.9 % recorded for the unmodified devices. The QA coating with exceptional insolubility and hydrophobicity also led to greatly enhanced contact angle from 35.6° for the pristine MAPbI 3 thin films to 77.2° for QA coated MAPbI 3 thin films. The stability of QA passivated MAPbI 3 perovskite thin films and PSCs were significantly enhanced, retaining about 90 % of the initial efficiencies after more than 1000 hours storage under ambient conditions.