Efficient wide‐bandgap (WBG) perovskite solar cells are needed to boost the efficiency of silicon solar cells to beyond Schottky–Queisser limit, but they suffer from a larger open circuit voltage (VOC) deficit than narrower bandgap ones. Here, it is shown that one major limitation of VOC in WBG perovskite solar cells comes from the nonmatched energy levels of charge transport layers. Indene‐C60 bisadduct (ICBA) with higher‐lying lowest‐unoccupied‐molecular‐orbital is needed for WBG perovskite solar cells, while its energy‐disorder needs to be minimized before a larger VOC can be observed. A simple method is applied to reduce the energy disorder by isolating isomer ICBA‐tran3 from the as‐synthesized ICBA‐mixture. WBG perovskite solar cells w...
Monolithic perovskite silicon tandem solar cells can overcome the theoretical efficiency limit of si...
Wide-bandgap perovskite solar cells (PSCs) with optimal bandgap (E$_{g}$) and high power conversion ...
Perovskite semiconductors have demonstrated outstanding external luminescence quantum yields, enabli...
Efficient wide-bandgap (WBG) perovskite solar cells are needed to boost the efficiency of silicon so...
Perovskites with bandgaps between 1.7 and 1.8 eV are optimal for tandem configurations with crystall...
Perovskites with bandgaps between 1.7 and 1.8 eV are optimal for tandem configurations with crystall...
Perovskites with bandgaps between 1.7 and 1.8 eV are optimal for tandem configurations with crystall...
Wide-bandgap ((Formula presented.) 1.7 eV) perovskite solar cells (PSCs) are plagued by relatively l...
In this work, we couple theoretical and experimental approaches to understand and reduce the losses ...
Among various types of perovskite based tandem solar cells TSCs , all perovskite TSCs are of partic...
Inorganic perovskite solar cells show excellent thermal stability, but the reported power conversion...
Wide bandgap (WB) organic-inorganic hybrid perovskites (OIHPs) with a bandgap ranging between 1.7 an...
Perovskite solar cells with power conversion efficiencies (PCE) above 25% have a great potential to ...
Monolithic perovskite silicon tandem solar cells can overcome the theoretical efficiency limit of si...
Wide-bandgap perovskite solar cells (PSCs) with optimal bandgap (E$_{g}$) and high power conversion ...
Perovskite semiconductors have demonstrated outstanding external luminescence quantum yields, enabli...
Efficient wide-bandgap (WBG) perovskite solar cells are needed to boost the efficiency of silicon so...
Perovskites with bandgaps between 1.7 and 1.8 eV are optimal for tandem configurations with crystall...
Perovskites with bandgaps between 1.7 and 1.8 eV are optimal for tandem configurations with crystall...
Perovskites with bandgaps between 1.7 and 1.8 eV are optimal for tandem configurations with crystall...
Wide-bandgap ((Formula presented.) 1.7 eV) perovskite solar cells (PSCs) are plagued by relatively l...
In this work, we couple theoretical and experimental approaches to understand and reduce the losses ...
Among various types of perovskite based tandem solar cells TSCs , all perovskite TSCs are of partic...
Inorganic perovskite solar cells show excellent thermal stability, but the reported power conversion...
Wide bandgap (WB) organic-inorganic hybrid perovskites (OIHPs) with a bandgap ranging between 1.7 an...
Perovskite solar cells with power conversion efficiencies (PCE) above 25% have a great potential to ...
Monolithic perovskite silicon tandem solar cells can overcome the theoretical efficiency limit of si...
Wide-bandgap perovskite solar cells (PSCs) with optimal bandgap (E$_{g}$) and high power conversion ...
Perovskite semiconductors have demonstrated outstanding external luminescence quantum yields, enabli...