AbstractMicrocrystalline silicon thin film solar cells exhibit optimal PV efficiency when the absorber layer contains similar proportions of crystalline and amorphous phases. When the crystalline fraction is reduced below 30%, efficiency falls very steeply, from around 8% to as low as 2%, and does not recover until fully amorphous growth conditions are established. We demonstrate that an electrical model, comprising two parallel-connected diodes scaled to reflect material composition, qualitatively predicts the features observed in the PV parameters. However the scale of the reduction in fill-factor is not reproduced. As an alternative approach, a homogeneous transport model is proposed in which carrier mobilities are scaled in accordance w...
Hole drift mobilities in hydrogenated amorphous silicon (a-Si:H) and nanocrystalline silicon (nc-Si:...
The properties of pin solar cells based on photogeneration of charge carriers into lowmobility mater...
Thin-film solar cells represent the most relevant technological extension of the photovoltaic energy...
AbstractMicrocrystalline silicon thin film solar cells exhibit optimal PV efficiency when the absorb...
Microcrystalline silicon thin film solar cells exhibit optimal PV efficiency when the absorber layer...
An equivalent-circuit electrical model is used to simulate the photovoltaic properties of mixed-phas...
For a better understanding of electronic transport mechanisms in thin-film silicon solar cell qualit...
The electrical properties of crystalline silicon crucially depend on the mobility of minority and ma...
Electronic transport in hydrogenated microcrystalline silicon (μc-Si:H) films largely depends on siz...
Carrier mobility in silicon plays a crucial role for photovoltaic applications. While the influence ...
VHF-PECVD was uséd to prepare doped and undoped microcrystalline silicon forapplications in thin-fil...
VHF-PECVD was used to prepare doped and undoped microcrystalline silicon for applications in thin-fi...
A photocurrent time-of-flight study of carrier transport in microcrystalline silicon pin diodes prep...
In recent times, thin-film solar cells have gained a lot of attention. This can be attributed to the...
Microcrystalline silicon is a two-phase material. Its composition can be interpreted as a series of ...
Hole drift mobilities in hydrogenated amorphous silicon (a-Si:H) and nanocrystalline silicon (nc-Si:...
The properties of pin solar cells based on photogeneration of charge carriers into lowmobility mater...
Thin-film solar cells represent the most relevant technological extension of the photovoltaic energy...
AbstractMicrocrystalline silicon thin film solar cells exhibit optimal PV efficiency when the absorb...
Microcrystalline silicon thin film solar cells exhibit optimal PV efficiency when the absorber layer...
An equivalent-circuit electrical model is used to simulate the photovoltaic properties of mixed-phas...
For a better understanding of electronic transport mechanisms in thin-film silicon solar cell qualit...
The electrical properties of crystalline silicon crucially depend on the mobility of minority and ma...
Electronic transport in hydrogenated microcrystalline silicon (μc-Si:H) films largely depends on siz...
Carrier mobility in silicon plays a crucial role for photovoltaic applications. While the influence ...
VHF-PECVD was uséd to prepare doped and undoped microcrystalline silicon forapplications in thin-fil...
VHF-PECVD was used to prepare doped and undoped microcrystalline silicon for applications in thin-fi...
A photocurrent time-of-flight study of carrier transport in microcrystalline silicon pin diodes prep...
In recent times, thin-film solar cells have gained a lot of attention. This can be attributed to the...
Microcrystalline silicon is a two-phase material. Its composition can be interpreted as a series of ...
Hole drift mobilities in hydrogenated amorphous silicon (a-Si:H) and nanocrystalline silicon (nc-Si:...
The properties of pin solar cells based on photogeneration of charge carriers into lowmobility mater...
Thin-film solar cells represent the most relevant technological extension of the photovoltaic energy...