A simple model for conductivity modulation in a recombination diode is discussed to explain the observation of negative capacitance at forward bias observed in many optoelectronic devices. We formulate the basic recombination-modulation model in terms of an equivalent circuit for small ac perturbation and discuss the application of the results in measurements of impedance spectroscopy of dye-sensitized solar cells, organic solar cells and related systems
Negative capacitance in the low-frequency domain and inverted hysteresis are familiar features in pe...
We discuss the progress and challenges in the application of impedance spectroscopy analysis to dete...
In this work, the capacitive response of organic electronic devices is analysed. Particular attentio...
While admittance measurements of solar cells are typically conducted in reverse or at zero bias, and...
The neg. capacitance as often obsd. at low frequencies in semiconducting devices is explained by bip...
The dynamics of trapping coupled with charge transfer is analysed in the frequency domain for a mode...
The diffusion–recombination model is a key tool in understanding the photovoltaic operation of solar...
So-called negative capacitance seems to remain an obscure feature in the analysis of the frequency-d...
The main features of the characteristic impedance spectra of dye-sensitized solar cells are describe...
Changes in the composition of the electrolyte are known to affect the parameters that determine the ...
Impedance spectroscopy is a powerful electrochemical small-perturbation technique that provides dyna...
Nongeminate recombination in organic solar cells is one of the main causes of reduced device perform...
Fundamental working mechanisms of perovskite solar cells (PSCs) remain an elusive topic of research....
We review the application of impedance spectroscopy in dye-sensitized solar cells, quantum dot-sensi...
Dye-sensitized solar cell (DSC) technology has been broadly investigated over the past few decades....
Negative capacitance in the low-frequency domain and inverted hysteresis are familiar features in pe...
We discuss the progress and challenges in the application of impedance spectroscopy analysis to dete...
In this work, the capacitive response of organic electronic devices is analysed. Particular attentio...
While admittance measurements of solar cells are typically conducted in reverse or at zero bias, and...
The neg. capacitance as often obsd. at low frequencies in semiconducting devices is explained by bip...
The dynamics of trapping coupled with charge transfer is analysed in the frequency domain for a mode...
The diffusion–recombination model is a key tool in understanding the photovoltaic operation of solar...
So-called negative capacitance seems to remain an obscure feature in the analysis of the frequency-d...
The main features of the characteristic impedance spectra of dye-sensitized solar cells are describe...
Changes in the composition of the electrolyte are known to affect the parameters that determine the ...
Impedance spectroscopy is a powerful electrochemical small-perturbation technique that provides dyna...
Nongeminate recombination in organic solar cells is one of the main causes of reduced device perform...
Fundamental working mechanisms of perovskite solar cells (PSCs) remain an elusive topic of research....
We review the application of impedance spectroscopy in dye-sensitized solar cells, quantum dot-sensi...
Dye-sensitized solar cell (DSC) technology has been broadly investigated over the past few decades....
Negative capacitance in the low-frequency domain and inverted hysteresis are familiar features in pe...
We discuss the progress and challenges in the application of impedance spectroscopy analysis to dete...
In this work, the capacitive response of organic electronic devices is analysed. Particular attentio...