Abstract Charge transport in organic materials as a function of carrier concentration is investigated. An analytical model of the concentration dependent mobility based on the variable hopping range theory is formulated. This model is applied to analyze the discrepancy between the experimental mobilities extracted from FETs and LEDs. The result shows that an exponential density of states (DOS) is a good approximation of the tail states for describing the charge transport in FETs. When applied to the low carrier concentration regime, for example to the LEDs regime, a Gaussian DOS should be assumed
AbstractAn analytic description of electric field and temperature dependences of mobility is develop...
[[abstract]]Organic semiconductors have attracted significant interest because of their potential ap...
[[abstract]]Organic semiconductors have attracted significant interest because of their potential ap...
An extended theory of carrier hopping transport in organic transistors is proposed. According to man...
An extended theory of carrier hopping transport in organic transistors is proposed. According to man...
An extended theory of carrier hopping transport in organic transistors is proposed. According to man...
An extended theory of carrier hopping transport in organic transistors is proposed. According to man...
An extended theory of carrier hopping transport in organic transistors is proposed. According to man...
An extended theory of carrier hopping transport in organic transistors is proposed. According to man...
The carrier transport properties in nanocrystalline semiconductors and organic materials play a key...
An extended theory of carrier hopping transport in organic transistors is proposed. According to man...
It was recently demonstrated that the hopping mobility in disordered organic semiconductors depends ...
AbstractAn analytic model of mobility dependence on charge-carrier concentration based on percolatio...
The influence of temperature, carrier density, and electric field on hopping transport in disordered...
The carrier transport properties in nanocrystalline semiconductors and organic materials play a key...
AbstractAn analytic description of electric field and temperature dependences of mobility is develop...
[[abstract]]Organic semiconductors have attracted significant interest because of their potential ap...
[[abstract]]Organic semiconductors have attracted significant interest because of their potential ap...
An extended theory of carrier hopping transport in organic transistors is proposed. According to man...
An extended theory of carrier hopping transport in organic transistors is proposed. According to man...
An extended theory of carrier hopping transport in organic transistors is proposed. According to man...
An extended theory of carrier hopping transport in organic transistors is proposed. According to man...
An extended theory of carrier hopping transport in organic transistors is proposed. According to man...
An extended theory of carrier hopping transport in organic transistors is proposed. According to man...
The carrier transport properties in nanocrystalline semiconductors and organic materials play a key...
An extended theory of carrier hopping transport in organic transistors is proposed. According to man...
It was recently demonstrated that the hopping mobility in disordered organic semiconductors depends ...
AbstractAn analytic model of mobility dependence on charge-carrier concentration based on percolatio...
The influence of temperature, carrier density, and electric field on hopping transport in disordered...
The carrier transport properties in nanocrystalline semiconductors and organic materials play a key...
AbstractAn analytic description of electric field and temperature dependences of mobility is develop...
[[abstract]]Organic semiconductors have attracted significant interest because of their potential ap...
[[abstract]]Organic semiconductors have attracted significant interest because of their potential ap...