Within the PVMD group at TU Delft, the study of perovskite/c-Si tandem solar cells is being researched. A comprehensive study is performed through advanced optical and electrical simulations to understand the tandem’s characteristics and operative behavior. We use GenPro4 and Sentaurus TCAD to perform the optical and electrical simulations, respectively. From the previous research, the developed J-V simulations revealed an indication of extra current collection from the tandem’s supporting layers. This extra current density makes the tandem’s short circuit current density J_SC higher than the current-matched J_ph of each perovskite and c-Si absorber layer. Because only J-V curves that could be simulated and not the EQE curves, it remained a...
International audienceIn this work, simulations were performed to optimize the parameters of a lead-...
This PhD work focuses on optoelectronic device simulations based on drift-diffusion models. Approach...
A model capable of describing the optoelectronic response of tandem photovoltaic cells is introduced...
The perovskite solar cell is considered a promising candidate as the top cell for high-efficiency ta...
AbstractThe perovskite solar cell is considered a promising candidate as the top cell for high-effic...
Individual actions cannot solve the current climate crisis. Part of the collective effort is to rese...
In this work, the simulation results obtained for a tandem configuration of perovskite, as top cell,...
Since single junction c-Si solar cells are reaching their practical efficiency limit. Perovskite/c-S...
We use simulations to optimize perovskite/silicon tandem solar cells in a novel three-terminal conf...
Tandem solar cells are the next step in the photovoltaic PV evolution due to their higher power co...
A perovskite-microcrystalline silicon-based thin-film tandem solar cell was designed and investigate...
International audienceIn this study, the optoelectronic properties of a monolithically integrated se...
Perovskite silicon tandem solar cells can overcome the efficiency limit of single junction silicon s...
Successful integration of perovskite cell with silicon cell to form a tandem solar device has shown ...
Performance of photovoltaic modules are widely expressed using their efficiency at Standard Test Con...
International audienceIn this work, simulations were performed to optimize the parameters of a lead-...
This PhD work focuses on optoelectronic device simulations based on drift-diffusion models. Approach...
A model capable of describing the optoelectronic response of tandem photovoltaic cells is introduced...
The perovskite solar cell is considered a promising candidate as the top cell for high-efficiency ta...
AbstractThe perovskite solar cell is considered a promising candidate as the top cell for high-effic...
Individual actions cannot solve the current climate crisis. Part of the collective effort is to rese...
In this work, the simulation results obtained for a tandem configuration of perovskite, as top cell,...
Since single junction c-Si solar cells are reaching their practical efficiency limit. Perovskite/c-S...
We use simulations to optimize perovskite/silicon tandem solar cells in a novel three-terminal conf...
Tandem solar cells are the next step in the photovoltaic PV evolution due to their higher power co...
A perovskite-microcrystalline silicon-based thin-film tandem solar cell was designed and investigate...
International audienceIn this study, the optoelectronic properties of a monolithically integrated se...
Perovskite silicon tandem solar cells can overcome the efficiency limit of single junction silicon s...
Successful integration of perovskite cell with silicon cell to form a tandem solar device has shown ...
Performance of photovoltaic modules are widely expressed using their efficiency at Standard Test Con...
International audienceIn this work, simulations were performed to optimize the parameters of a lead-...
This PhD work focuses on optoelectronic device simulations based on drift-diffusion models. Approach...
A model capable of describing the optoelectronic response of tandem photovoltaic cells is introduced...