This research presents thin film deposition and characterization of metal oxides using industrially viable Physical Vapour Deposition (PVD) techniques. The research examines low temperature processed electron and hole transport metal oxides for high performance and stable perovskite solar cells. The physical, chemical, optical and electronic properties of the films were investigated and their device performance has been evaluated. The performance of the device improved and the materials cost reduced by replacing the expansive organic materials with more stable inorganic metal oxides
Nowadays, the power conversion efficiency of organometallic mixed halide perovskite solar cells (PSC...
Nowadays, the power conversion efficiency of organometallic mixed halide perovskite solar cells (PSC...
International audienceTo upscale the emerging perovskite photovoltaic technology to larger-size modu...
This research investigates various thin-film metal oxides as charge transport layer for improving th...
Atomic layer deposition is widely acknowledged as a powerful technique for the deposition of high qu...
The main focus of this thesis is on metal oxide layers and their possible implementation as carrier ...
Vapor-based processes are particularly promising to deposit the perovskite thin film absorber of sol...
Solar energy harvesting through photovoltaic conversion has gained great attention as a sustainable ...
Metal-supported solid oxide fuel cells require application technologies for thin ceramic films at lo...
Emerging photovoltaics describe the latest class of solar cells designed to satisfy mankind’s need f...
Currently, the efficiency of perovskite solar cells (PSCs) is approximate to 24%. For the fabricatio...
In recent decades, metal halide perovskites have attracted much attention after showing great potent...
In the solar energy arena, there is a considerable market for portable, lightweight, and flexible so...
This paper presents an alternative way to obtain perovskite thin films for photovoltaic application....
The heterojunction formed when wide bandgap oxides come into contact with perovskite solar cells is ...
Nowadays, the power conversion efficiency of organometallic mixed halide perovskite solar cells (PSC...
Nowadays, the power conversion efficiency of organometallic mixed halide perovskite solar cells (PSC...
International audienceTo upscale the emerging perovskite photovoltaic technology to larger-size modu...
This research investigates various thin-film metal oxides as charge transport layer for improving th...
Atomic layer deposition is widely acknowledged as a powerful technique for the deposition of high qu...
The main focus of this thesis is on metal oxide layers and their possible implementation as carrier ...
Vapor-based processes are particularly promising to deposit the perovskite thin film absorber of sol...
Solar energy harvesting through photovoltaic conversion has gained great attention as a sustainable ...
Metal-supported solid oxide fuel cells require application technologies for thin ceramic films at lo...
Emerging photovoltaics describe the latest class of solar cells designed to satisfy mankind’s need f...
Currently, the efficiency of perovskite solar cells (PSCs) is approximate to 24%. For the fabricatio...
In recent decades, metal halide perovskites have attracted much attention after showing great potent...
In the solar energy arena, there is a considerable market for portable, lightweight, and flexible so...
This paper presents an alternative way to obtain perovskite thin films for photovoltaic application....
The heterojunction formed when wide bandgap oxides come into contact with perovskite solar cells is ...
Nowadays, the power conversion efficiency of organometallic mixed halide perovskite solar cells (PSC...
Nowadays, the power conversion efficiency of organometallic mixed halide perovskite solar cells (PSC...
International audienceTo upscale the emerging perovskite photovoltaic technology to larger-size modu...