AbstractDirect solar-to-hydrogen conversion via water splitting was demonstrated in an integrated photovoltaic–electrochemical (PV–EC) device using a hydrogenated amorphous silicon thin film tandem junction (a-Si:H/a-Si:H) solar cell as photocathode. The solar cell was adapted to provide sufficient photovoltage to drive both the hydrogen and oxygen evolution reactions. The best results, in terms of photoelectrochemical stability and performance, were obtained with an Ag/Pt layer stack as H2 evolving photocathode back contact and with a RuO2 counter electrode for O2 evolution. Under irradiation by simulated sunlight (AM 1.5 spectrum with 100mW/cm2), we achieved 6.8% solar-to-hydrogen efficiency at 0V applied bias in a two-electrode set-up. T...
We report on the development of high performance triple and quadruple junction solar cells made of a...
Photoelectrochemistry allows us to store the solar energy as chemical energy by splitting water into...
The fabrication process of high performance quadruple junction thin film silicon solar cells is desc...
Direct solar-to-hydrogen conversion via water splitting was demonstrated in an integrated photovolta...
AbstractDirect solar-to-hydrogen conversion via water splitting was demonstrated in an integrated ph...
Hydrogenated amorphous silicon thin film tandem solar cells (a-Si:H/a-Si:H) have been developed with...
For the application as photocathodes in integrated photoelectrochemical water splitting devices the ...
We report on the development and application of thin film silicon tandem junction solar cells as pho...
In this study amorphous silicon tandem solar cells are successfully utilized as photoelectrodes in a...
This contribution focuses on the utilization of thin film Si tandem junction photocathodes for the a...
Thin film silicon based multi-junction solar cells were developed for application in combined photov...
It has been widely recognised that fossil fuel reserves are not sufficient to cover the energy deman...
Thin film tandem solar cells based on amorphous and microcrystalline silicon (a-Si:H/μc-Si:H) are em...
We report on the optimization of thin film silicon tandem junction solar cells for applications in p...
Thin film silicon tandem junction solar cells based on amorphous silicon (a-Si:H) and microcrystalli...
We report on the development of high performance triple and quadruple junction solar cells made of a...
Photoelectrochemistry allows us to store the solar energy as chemical energy by splitting water into...
The fabrication process of high performance quadruple junction thin film silicon solar cells is desc...
Direct solar-to-hydrogen conversion via water splitting was demonstrated in an integrated photovolta...
AbstractDirect solar-to-hydrogen conversion via water splitting was demonstrated in an integrated ph...
Hydrogenated amorphous silicon thin film tandem solar cells (a-Si:H/a-Si:H) have been developed with...
For the application as photocathodes in integrated photoelectrochemical water splitting devices the ...
We report on the development and application of thin film silicon tandem junction solar cells as pho...
In this study amorphous silicon tandem solar cells are successfully utilized as photoelectrodes in a...
This contribution focuses on the utilization of thin film Si tandem junction photocathodes for the a...
Thin film silicon based multi-junction solar cells were developed for application in combined photov...
It has been widely recognised that fossil fuel reserves are not sufficient to cover the energy deman...
Thin film tandem solar cells based on amorphous and microcrystalline silicon (a-Si:H/μc-Si:H) are em...
We report on the optimization of thin film silicon tandem junction solar cells for applications in p...
Thin film silicon tandem junction solar cells based on amorphous silicon (a-Si:H) and microcrystalli...
We report on the development of high performance triple and quadruple junction solar cells made of a...
Photoelectrochemistry allows us to store the solar energy as chemical energy by splitting water into...
The fabrication process of high performance quadruple junction thin film silicon solar cells is desc...