The low-frequency differential capacitance of single-carrier (metal/organic semiconductor/metal) devices with a sandwich structure is shown to display a distinct peak if the injection barrier of at least one of the electrodes is sufficiently small. The effect is shown to be caused by the diffusion contribution to the current density. Depending on the height of the injection barriers, the peak voltage can be a few tenths of a volt below the built-in voltage, Vbi. We show how the peak voltage and the peak height can be used to accurately determine the injection barriers and Vbi, and we demonstrate the method by applying it to polyfluorene-based devices
Charge injection from electrodes into doped organic films is a widespread technology used in the maj...
Hole mobility in N,N′-diphenyl-N,N′-bis(1-naphtylphenyl)-1,1′-biphenyl-4,4′-diamine (α-NPD) is evalu...
Injection-limited operation is identified in thin-film, α-NPD-based diodes. A detailed model for the...
The low-frequency differential capacitance of single-carrier (metal/organic semiconductor/metal) dev...
Capacitance-voltage (C-V) measurements represent a very useful technique, however, its usage in orga...
It has recently been shown how the injection barriers at the electrode interfaces and the built-in v...
[[abstract]]A comprehensive numerical model is established for the electrical processes in a sandwic...
Single-carrier devices are an excellent model system to study charge injection and charge transport ...
This work describes the current over an interface between two different polymeric semiconductors. Th...
By considering the changes in the interface charge-carrier densities of a single-carrier device as a...
The electrical characteristics of organic semiconductors have been studied intensively ever since co...
Charge injection in organic light emitting diodes (OLEDs) is studied by impedance spectroscopy on a ...
Interfacial barriers at the metal- semiconductor junction manifest in the form of sizable contact re...
A high-mobility organic semiconductor employed as the active material in a field-effect transistor d...
A simple model is developed for the admittance of a metal-insulator-semiconductor (MIS) capacitor wh...
Charge injection from electrodes into doped organic films is a widespread technology used in the maj...
Hole mobility in N,N′-diphenyl-N,N′-bis(1-naphtylphenyl)-1,1′-biphenyl-4,4′-diamine (α-NPD) is evalu...
Injection-limited operation is identified in thin-film, α-NPD-based diodes. A detailed model for the...
The low-frequency differential capacitance of single-carrier (metal/organic semiconductor/metal) dev...
Capacitance-voltage (C-V) measurements represent a very useful technique, however, its usage in orga...
It has recently been shown how the injection barriers at the electrode interfaces and the built-in v...
[[abstract]]A comprehensive numerical model is established for the electrical processes in a sandwic...
Single-carrier devices are an excellent model system to study charge injection and charge transport ...
This work describes the current over an interface between two different polymeric semiconductors. Th...
By considering the changes in the interface charge-carrier densities of a single-carrier device as a...
The electrical characteristics of organic semiconductors have been studied intensively ever since co...
Charge injection in organic light emitting diodes (OLEDs) is studied by impedance spectroscopy on a ...
Interfacial barriers at the metal- semiconductor junction manifest in the form of sizable contact re...
A high-mobility organic semiconductor employed as the active material in a field-effect transistor d...
A simple model is developed for the admittance of a metal-insulator-semiconductor (MIS) capacitor wh...
Charge injection from electrodes into doped organic films is a widespread technology used in the maj...
Hole mobility in N,N′-diphenyl-N,N′-bis(1-naphtylphenyl)-1,1′-biphenyl-4,4′-diamine (α-NPD) is evalu...
Injection-limited operation is identified in thin-film, α-NPD-based diodes. A detailed model for the...