Charge transport measurement using the Metal-Insulator-Semiconductor Charge Extraction by Linearly Increasing Voltage (MIS-CELIV) technique is a promising method for determining charge mobility in organic semiconductors because of its ability to study electron and hole mobilities independently. However, MIS-CELIV measurements have a number of parameters that can potentially affect the calculated mobility. There are only a few reports on MIS-CELIV being used to determine the charge mobility for materials typically used in organic light-emitting diodes (OLEDs), and the impact of each of the MIS-CELIV experimental parameters on the mobility is presently unknown. We find that the pulse duration, injection time, maximum voltage, offset voltage, ...
Organic electronics is an emerging technology with numerous applications in which the active layer i...
We present experimental and device model results for the current–voltage characteristics of a series...
Hole mobility in N,N′-diphenyl-N,N′-bis(1-naphtylphenyl)-1,1′-biphenyl-4,4′-diamine (α-NPD) is evalu...
Injection-charge extraction by linearly increasing voltage in metal-insulator-semiconductor structur...
We demonstrate the application of the CELIV (charge carrier extraction by linearly increasing voltag...
The article demonstrates an original, non-destructive technique that could be used to in situ monito...
In this thesis I present a comprehensive study of charge transport and injection into organic semico...
Single-carrier devices are an excellent model system to study charge injection and charge transport ...
AbstractCharge carrier mobility is a figure of merit commonly used to rate organic semiconducting ma...
We present device model calculations for the current–voltage (I–V) characteristics of organic diodes...
The charge behavior of organic light emitting diode (OLED) is investigated by steady-state current–v...
© Published under licence by IOP Publishing Ltd. Measuring the mobility of charge carriers by the ti...
The research field of organic electronics experiences tremendous developments since the discovery of...
We report on the realization of charge selective CELIV (charge extraction by linearly increasing vol...
Charge transport, with charge carrier mobility as main parameter, is one of the fundamental properti...
Organic electronics is an emerging technology with numerous applications in which the active layer i...
We present experimental and device model results for the current–voltage characteristics of a series...
Hole mobility in N,N′-diphenyl-N,N′-bis(1-naphtylphenyl)-1,1′-biphenyl-4,4′-diamine (α-NPD) is evalu...
Injection-charge extraction by linearly increasing voltage in metal-insulator-semiconductor structur...
We demonstrate the application of the CELIV (charge carrier extraction by linearly increasing voltag...
The article demonstrates an original, non-destructive technique that could be used to in situ monito...
In this thesis I present a comprehensive study of charge transport and injection into organic semico...
Single-carrier devices are an excellent model system to study charge injection and charge transport ...
AbstractCharge carrier mobility is a figure of merit commonly used to rate organic semiconducting ma...
We present device model calculations for the current–voltage (I–V) characteristics of organic diodes...
The charge behavior of organic light emitting diode (OLED) is investigated by steady-state current–v...
© Published under licence by IOP Publishing Ltd. Measuring the mobility of charge carriers by the ti...
The research field of organic electronics experiences tremendous developments since the discovery of...
We report on the realization of charge selective CELIV (charge extraction by linearly increasing vol...
Charge transport, with charge carrier mobility as main parameter, is one of the fundamental properti...
Organic electronics is an emerging technology with numerous applications in which the active layer i...
We present experimental and device model results for the current–voltage characteristics of a series...
Hole mobility in N,N′-diphenyl-N,N′-bis(1-naphtylphenyl)-1,1′-biphenyl-4,4′-diamine (α-NPD) is evalu...