In this work, we describe the role of the different layers in perovskite solar cells to achieve reproducible, ~16% efficient perovskite solar cells. We used a planar device architecture with PEDOT:PSS on the bottom, followed by the perovskite layer and an evaporated C60 layer before deposition of the top electrode. No high temperature annealing step is needed, which also allows processing on flexible plastic substrates. Only the optimization of all of these layers leads to highly efficient and reproducible results. In this work, we describe the effects of different processing conditions, especially the influence of the C60 top layer on the device performance
Photovoltaic is among the most propitious renewable energy sources for meeting global energy demands...
Abstract In this study, we reported a low-temperature, one-step solution process to fabricate perovs...
Hybrid organometallic halide perovskite photovoltaics has seen remarkable growth in world wide resea...
In this work, we describe the role of the different layers in perovskite solar cells to achieve repr...
Scalable deposition processes at low temperature are urgently needed for the commercialization of pe...
Ever since emerging to the solar cell scene in 2009 as a light harvester in dye-sensitized solar cel...
Planar perovskite solar cells and modules were realized by using low temperature solution-process fa...
For planar structured organic–inorganic hybrid perovskite solar cells (PerSCs) with the poly(3,4-et...
A long-standing dream in the large scale application of solar energy conversion is the fabrication o...
Perovskite solar cells have attracted enormous interest since their discovery only a few years ago b...
Perovskite solar cells have attracted enormous interest since their discovery only a few years ago b...
Planar perovskite solar cells and modules were realized by using low temperature solution-process fa...
The work documented in this thesis concerns the control and modification of semiconducting perovskit...
Two simple, low-temperature solution processes efficiently fabricate high-quality photovoltaics. Org...
Photovoltaic is among the most propitious renewable energy sources for meeting global energy demands...
Abstract In this study, we reported a low-temperature, one-step solution process to fabricate perovs...
Hybrid organometallic halide perovskite photovoltaics has seen remarkable growth in world wide resea...
In this work, we describe the role of the different layers in perovskite solar cells to achieve repr...
Scalable deposition processes at low temperature are urgently needed for the commercialization of pe...
Ever since emerging to the solar cell scene in 2009 as a light harvester in dye-sensitized solar cel...
Planar perovskite solar cells and modules were realized by using low temperature solution-process fa...
For planar structured organic–inorganic hybrid perovskite solar cells (PerSCs) with the poly(3,4-et...
A long-standing dream in the large scale application of solar energy conversion is the fabrication o...
Perovskite solar cells have attracted enormous interest since their discovery only a few years ago b...
Perovskite solar cells have attracted enormous interest since their discovery only a few years ago b...
Planar perovskite solar cells and modules were realized by using low temperature solution-process fa...
The work documented in this thesis concerns the control and modification of semiconducting perovskit...
Two simple, low-temperature solution processes efficiently fabricate high-quality photovoltaics. Org...
Photovoltaic is among the most propitious renewable energy sources for meeting global energy demands...
Abstract In this study, we reported a low-temperature, one-step solution process to fabricate perovs...
Hybrid organometallic halide perovskite photovoltaics has seen remarkable growth in world wide resea...