Perovskite solar cells have emerged as one of the most promising thin-film photovoltaic (PV) technologies and have made a strong debut in the PV field. However, they still face difficulties with up-scaling to module-level devices and long-term stability issue. Here, we report the use of a room-temperature nonvolatile Lewis base additive, diphenyl sulfoxide(DPSO), in formamidinium-cesium (FACs) perovskite precursor solution to enhance the nucleation barrier and stabilize the wet precursor film for the scalable fabrication of uniform, large-area FACs perovskite films. With a parallel-interconnected module design, the resultant solar module realized a certified quasi-stabilized efficiency of 16.63% with an active area of 20.77 cm². The encapsu...
Upscaling efficient and stable perovskite layers is one of the most challenging issues in the commer...
Hybrid organic-inorganic perovskite photovoltaics (PSCs) have attracted significant attention during...
Preparation of black formamidinium lead iodide (FAPbI3) requires high temperature annealing and the ...
In addition to high efficiencies, upscaling and long‐term operational stability are key pre‐requisit...
The development of scalable deposition methods for stable perovskite layers is a prerequisite for th...
Upscalable fabrication of efficient and stable perovskite solar modules is urgently needed for comme...
Organic-inorganic lead halide perovskites have shown great potential in efficient photovoltaic devic...
Through the optimization of the perovskite precursor composition and interfaces to selective contact...
Due to the high industrial interest for perovskite-based photovoltaic devices, there is an urgent ne...
Wide bandgap halide perovskite materials show promising potential to pair with silicon bottom cells....
Formamidinium iodide FAI based perovskite absorbers have been shown to be ideal candidates for hig...
In the last decade, metal halide perovskites have emerged as an innovative thin film photovoltaic te...
As an emerging sunlight‐harvesting material, halide perovskite has obtained extensive achievements o...
\u3cp\u3eIn order to commercialize the perovskite solar cells (PSC) technology, efficient and indust...
One of the major bottlenecks of perovskite photovoltaic modules fabrication is the homogeneous depos...
Upscaling efficient and stable perovskite layers is one of the most challenging issues in the commer...
Hybrid organic-inorganic perovskite photovoltaics (PSCs) have attracted significant attention during...
Preparation of black formamidinium lead iodide (FAPbI3) requires high temperature annealing and the ...
In addition to high efficiencies, upscaling and long‐term operational stability are key pre‐requisit...
The development of scalable deposition methods for stable perovskite layers is a prerequisite for th...
Upscalable fabrication of efficient and stable perovskite solar modules is urgently needed for comme...
Organic-inorganic lead halide perovskites have shown great potential in efficient photovoltaic devic...
Through the optimization of the perovskite precursor composition and interfaces to selective contact...
Due to the high industrial interest for perovskite-based photovoltaic devices, there is an urgent ne...
Wide bandgap halide perovskite materials show promising potential to pair with silicon bottom cells....
Formamidinium iodide FAI based perovskite absorbers have been shown to be ideal candidates for hig...
In the last decade, metal halide perovskites have emerged as an innovative thin film photovoltaic te...
As an emerging sunlight‐harvesting material, halide perovskite has obtained extensive achievements o...
\u3cp\u3eIn order to commercialize the perovskite solar cells (PSC) technology, efficient and indust...
One of the major bottlenecks of perovskite photovoltaic modules fabrication is the homogeneous depos...
Upscaling efficient and stable perovskite layers is one of the most challenging issues in the commer...
Hybrid organic-inorganic perovskite photovoltaics (PSCs) have attracted significant attention during...
Preparation of black formamidinium lead iodide (FAPbI3) requires high temperature annealing and the ...