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Record Open‐Circuit Voltage Wide‐Bandgap Perovskite Solar Cells Utilizing 2D/3D Perovskite Heterostructure
Authors:Saba Gharibzadeh  Bahram Abdollahi Nejand  Marius Jakoby  Tobias Abzieher  Dirk Hauschild  Somayeh Moghadamzadeh  Jonas A Schwenzer  Philipp Brenner  Raphael Schmager  Amir Abbas Haghighirad  Lothar Weinhardt  Uli Lemmer  Bryce S Richards  Ian A Howard  Ulrich W Paetzold
Abstract:In this work, the authors realize stable and highly efficient wide‐bandgap perovskite solar cells that promise high power conversion efficiencies (PCE) and are likely to play a key role in next generation multi‐junction photovoltaics (PV). This work reports on wide‐bandgap (≈1.72 eV) perovskite solar cells exhibiting stable PCEs of up to 19.4% and a remarkably high open‐circuit voltage (VOC) of 1.31 V. The VOC‐to‐bandgap ratio is the highest reported for wide‐bandgap organic?inorganic hybrid perovskite solar cells and the VOC also exceeds 90% of the theoretical maximum, defined by the Shockley–Queisser limit. This advance is based on creating a hybrid 2D/3D perovskite heterostructure. By spin coating n‐butylammonium bromide on the double‐cation perovskite absorber layer, a thin 2D Ruddlesden–Popper perovskite layer of intermediate phases is formed, which mitigates nonradiative recombination in the perovskite absorber layer. As a result, VOC is enhanced by 80 mV.
Keywords:2D Ruddlesden–  Popper  2D/3D perovskite heterostructure  metal halide perovskites  photovoltaics  solar cells  wide bandgap
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