A hybrid tandem solar cell consisting of a thin-film, nanocrystalline silicon top junction and a siliconheterojunction bottom junction is proposed as a supporting solar cell for photoelectrochemical applications.Tunneling recombination junction engineering is shown to be an important consideration indesigning this type of solar cell. The best hybrid cell produced has a spectral utilization of 30.6 mA cm2a JSC of 14 mA cm2, a VOC of 1.1 V, a fill factor of 0.67 and thus an efficiency of 10.3%. A high solar-tohydrogenefficiency of 7.9% can be predicted when using the hybrid cell in conjunction with current a-SiCphotocathode technology
We report on the development of multijunction solar cells for the integration in photoelectrochemica...
This contribution focuses on the utilization of thin film Si tandem junction photocathodes for the a...
Hydrogenated amorphous silicon thin film tandem solar cells (a-Si:H/a-Si:H) have been developed with...
Solar fuels are a promising way to store solar energy seasonally. This paper proposes an earth-abund...
We report on the optimization of thin film silicon tandem junction solar cells for applications in p...
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...
Thin film tandem solar cells based on amorphous and microcrystalline silicon (a-Si:H/μc-Si:H) are em...
One of the main problems of renewable energies is storage of the energy carrier. For long-term stora...
As is obvious from previous work on semiconductor photoelectrochemistry, single junction semiconduct...
Tandem solar cells (SCs) have been studied in order to harvest the fullest possible range of the sol...
Despite the fact that renewable energy sources are on the march, our energy system is still dominate...
The fabrication process of high performance quadruple junction thin film silicon solar cells is desc...
Thin film silicon tandem junction solar cells based on amorphous silicon (a-Si:H) and microcrystalli...
Tandem solar cells based on crystalline silicon present a practical route toward low-cost cells with...
We report on the development of multijunction solar cells for the integration in photoelectrochemica...
This contribution focuses on the utilization of thin film Si tandem junction photocathodes for the a...
Hydrogenated amorphous silicon thin film tandem solar cells (a-Si:H/a-Si:H) have been developed with...
Solar fuels are a promising way to store solar energy seasonally. This paper proposes an earth-abund...
We report on the optimization of thin film silicon tandem junction solar cells for applications in p...
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...
Thin film tandem solar cells based on amorphous and microcrystalline silicon (a-Si:H/μc-Si:H) are em...
One of the main problems of renewable energies is storage of the energy carrier. For long-term stora...
As is obvious from previous work on semiconductor photoelectrochemistry, single junction semiconduct...
Tandem solar cells (SCs) have been studied in order to harvest the fullest possible range of the sol...
Despite the fact that renewable energy sources are on the march, our energy system is still dominate...
The fabrication process of high performance quadruple junction thin film silicon solar cells is desc...
Thin film silicon tandem junction solar cells based on amorphous silicon (a-Si:H) and microcrystalli...
Tandem solar cells based on crystalline silicon present a practical route toward low-cost cells with...
We report on the development of multijunction solar cells for the integration in photoelectrochemica...
This contribution focuses on the utilization of thin film Si tandem junction photocathodes for the a...
Hydrogenated amorphous silicon thin film tandem solar cells (a-Si:H/a-Si:H) have been developed with...