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2D/3D Heterostructure for Semitransparent Perovskite Solar Cells with Engineered Bandgap Enables Efficiencies Exceeding 25% in Four‐Terminal Tandems with Silicon and CIGS
Authors:Saba Gharibzadeh  Ihteaz M Hossain  Paul Fassl  Bahram Abdollahi Nejand  Tobias Abzieher  Moritz Schultes  Erik Ahlswede  Philip Jackson  Michael Powalla  Sren Schfer  Michael Riencker  Tobias Wietler  Robby Peibst  Uli Lemmer  Bryce S Richards  Ulrich W Paetzold
Affiliation:Saba Gharibzadeh,Ihteaz M. Hossain,Paul Fassl,Bahram Abdollahi Nejand,Tobias Abzieher,Moritz Schultes,Erik Ahlswede,Philip Jackson,Michael Powalla,Sören Schäfer,Michael Rienäcker,Tobias Wietler,Robby Peibst,Uli Lemmer,Bryce S. Richards,Ulrich W. Paetzold
Abstract:Wide‐bandgap perovskite solar cells (PSCs) with optimal bandgap (Eg) and high power conversion efficiency (PCE) are key to high‐performance perovskite‐based tandem photovoltaics. A 2D/3D perovskite heterostructure passivation is employed for double‐cation wide‐bandgap PSCs with engineered bandgap (1.65 eV ≤ Eg ≤ 1.85 eV), which results in improved stabilized PCEs and a strong enhancement in open‐circuit voltages of around 45 mV compared to reference devices for all investigated bandgaps. Making use of this strategy, semitransparent PSCs with engineered bandgap are developed, which show stabilized PCEs of up to 25.7% and 25.0% in four‐terminal perovskite/c‐Si and perovskite/CIGS tandem solar cells, respectively. Moreover, comparable tandem PCEs are observed for a broad range of perovskite bandgaps. For the first time, the robustness of the four‐terminal tandem configuration with respect to variations in the perovskite bandgap for two state‐of‐the‐art bottom solar cells is experimentally validated.
Keywords:2D perovskites  3D perovskites  copper indium gallium diselenide  tandem solar cells
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