Among various coating techniques, blade coating is one promising alternative for upscaling perovskite photovoltaic devices from small area research cells to intermediately sized cells and modules. Also, it is potentially compatible for future roll-to-roll processing. In this work, planar inverted (p-i-n) solution-processed perovskite solar cells are presented, with absorber layers deposited via blade coating in a one-step process, employing lead(II) acetate trihydrate as lead source. It is found that control of the perovskite layer drying before annealing is most critical for device function. Various drying approaches by temperature and/or blowing with a directed nitrogen stream are compared and demonstrate a large impact on device performa...
Flexible perovskite solar cells have been considered promising candidates for novel applications tha...
Although halide perovskite solar cell (PSC) technology reaches, in few years, efficiencies greater t...
In this work, we describe the role of the different layers in perovskite solar cells to achieve repr...
Heat-assisted blade-coating (HABC) technique can be applied for scalable production of perovskite so...
Lab-scale perovskite solar cells (PSCs) have recently reached power conversion efficiencies (PCEs) o...
Fully printed perovskite solar cells (PSCs) were fabricated in air with all constituent layers, exce...
Ever since emerging to the solar cell scene in 2009 as a light harvester in dye-sensitized solar cel...
Perovskite solar cells present the possibility for less expensive electricity generation, through th...
The process of crystallization of lead halide perovskites by industrially relevant techniques involv...
Perovskite solar cells (PSCs) have recently gained power conversion efficiencies (PCEs) of up to 25....
Organo-metal halide perovskite demonstrates a large potential for achieving highly efficient photovo...
Screen printing technology is a cost-effective method capable of mass production. Screen printable c...
Organo-metal halide perovskite demonstrates a large potential for achieving highly efficient photovo...
Blade-coating has recently emerged as a scalable fabrication method for hybrid perovskite solar cell...
Flexible perovskite solar cells have been considered promising candidates for novel applications tha...
Although halide perovskite solar cell (PSC) technology reaches, in few years, efficiencies greater t...
In this work, we describe the role of the different layers in perovskite solar cells to achieve repr...
Heat-assisted blade-coating (HABC) technique can be applied for scalable production of perovskite so...
Lab-scale perovskite solar cells (PSCs) have recently reached power conversion efficiencies (PCEs) o...
Fully printed perovskite solar cells (PSCs) were fabricated in air with all constituent layers, exce...
Ever since emerging to the solar cell scene in 2009 as a light harvester in dye-sensitized solar cel...
Perovskite solar cells present the possibility for less expensive electricity generation, through th...
The process of crystallization of lead halide perovskites by industrially relevant techniques involv...
Perovskite solar cells (PSCs) have recently gained power conversion efficiencies (PCEs) of up to 25....
Organo-metal halide perovskite demonstrates a large potential for achieving highly efficient photovo...
Screen printing technology is a cost-effective method capable of mass production. Screen printable c...
Organo-metal halide perovskite demonstrates a large potential for achieving highly efficient photovo...
Blade-coating has recently emerged as a scalable fabrication method for hybrid perovskite solar cell...
Flexible perovskite solar cells have been considered promising candidates for novel applications tha...
Although halide perovskite solar cell (PSC) technology reaches, in few years, efficiencies greater t...
In this work, we describe the role of the different layers in perovskite solar cells to achieve repr...