Predicting the performance of solar cells though analytical models is important for the theory-guided optimization of these devices. Earlier models neglect the impact of the optical generation in the quasi-neutral regions of a perovskite solar cell. Here, a new model is developed that takes optical generation in these regions into account. The model includes the full depletion approximation and the drift-diffusion transport mechanisms. A comparison with earlier models demonstrates the improved predictive power of the developed model. In addition, the accuracy of the model was assessed by comparing it prediction to experimental data obtained from working devices
A variety of experiments on vacuum deposited methylammonium lead iodide perovskite solar cells is pr...
Current perovskite solar cells reach high efficiencieswith inexpensive materials and preparation met...
Despite the exciting recent research on perovskite based solar cells, the design space for further o...
Drift-diffusion model is an indispensable modeling tool to understand the carrier dynamics (transpor...
International audienceWe present an iterative method to model the optical properties of a complete s...
Ideality factors are used to identify the dominant form of recombination in many types of solar cell...
A recent forecast suggested that solar cell industry will contribute nearly one third of new electri...
From Maxwell-Stefan diffusion and general electrostatics, we derive a drift-diffusion model for char...
International audienceCompared with the almost long-time stuck power conversion efficiency of silico...
A physics-based compact analytical model for studying the current–voltage characteristics of perovsk...
International audienceAs perovskite solar cells (PSC) are now reaching high power conversion efficie...
[eng] We investigate the absorptance and the power conversion efficiency of a perovskite thin-film s...
Solar energy is one of the key enabling technologies for the transition to a zero-carbon society – a...
Over the past decade, perovskite solar cells have become one of the major research interests of the ...
Numerical modelling is pivotal in the development of high efficiency solar cells. In this contributi...
A variety of experiments on vacuum deposited methylammonium lead iodide perovskite solar cells is pr...
Current perovskite solar cells reach high efficiencieswith inexpensive materials and preparation met...
Despite the exciting recent research on perovskite based solar cells, the design space for further o...
Drift-diffusion model is an indispensable modeling tool to understand the carrier dynamics (transpor...
International audienceWe present an iterative method to model the optical properties of a complete s...
Ideality factors are used to identify the dominant form of recombination in many types of solar cell...
A recent forecast suggested that solar cell industry will contribute nearly one third of new electri...
From Maxwell-Stefan diffusion and general electrostatics, we derive a drift-diffusion model for char...
International audienceCompared with the almost long-time stuck power conversion efficiency of silico...
A physics-based compact analytical model for studying the current–voltage characteristics of perovsk...
International audienceAs perovskite solar cells (PSC) are now reaching high power conversion efficie...
[eng] We investigate the absorptance and the power conversion efficiency of a perovskite thin-film s...
Solar energy is one of the key enabling technologies for the transition to a zero-carbon society – a...
Over the past decade, perovskite solar cells have become one of the major research interests of the ...
Numerical modelling is pivotal in the development of high efficiency solar cells. In this contributi...
A variety of experiments on vacuum deposited methylammonium lead iodide perovskite solar cells is pr...
Current perovskite solar cells reach high efficiencieswith inexpensive materials and preparation met...
Despite the exciting recent research on perovskite based solar cells, the design space for further o...