Doping has been proved to be one of the powerful technologies to achieve significant improvement in the performance of organic electronic devices. Herein, we systematically map out the interface properties of solution-processed air-stable n-type (4(1,3-dimethyl-2,3-dihydro-1H-benzoimidazol-2-yl)phenyl) doping fullerenes and fullerene derivatives and establish a universal energy level alignment scheme for this class of n-doped system. At low doping levels at which the charge-transfer doping induces mainly bound charges, the energy level alignment of the n-doping organic semiconductor can be described by combining integer charger transfer-induced shifts with a so-called double-dipole step. At high doping levels, significant densities of free ...
In this thesis, we study the physical properties of doped organic semiconductors. We first demonstra...
New air-stable dimeric n-dopants are synthesized and studied in detail with respect to the kinetics ...
In this contribution, for the first time, the polarity of fullerene derivatives is tailored to enhan...
Doping has been proved to be one of the powerful technologies to achieve significant improvement in ...
Doping has been proved to be one of the powerful technologies to achieve significant improvement in ...
The molecular doping of organic semiconductors represents a key strategy for advancing organic elect...
Molecular doping of organic semiconductors and devices represents an enabling technology for a range...
© 2012 American Institute of Physics. The electronic version of this article is the complete one and...
The discovery of air-stable n-dopants for organic semiconductor materials has been hindered by the n...
Molecular doping makes possible tunable electronic properties of organic semiconductors, yet a lack ...
Organic electronics based on organic semiconductors offer tremendous advantages compared to traditio...
Chemical doping of organic semiconductors using molecular dopants plays a key role in the fabricatio...
Molecular doping is a key technique for realizing high efficient organic light-emitting diodes (OLED...
The field of organic electronics thrives on the hope of enabling low-cost, solution-processed electr...
We study the mechanism of molecular doping of the organic small molecule N,N,N′,N′-tetrakis(4-methox...
In this thesis, we study the physical properties of doped organic semiconductors. We first demonstra...
New air-stable dimeric n-dopants are synthesized and studied in detail with respect to the kinetics ...
In this contribution, for the first time, the polarity of fullerene derivatives is tailored to enhan...
Doping has been proved to be one of the powerful technologies to achieve significant improvement in ...
Doping has been proved to be one of the powerful technologies to achieve significant improvement in ...
The molecular doping of organic semiconductors represents a key strategy for advancing organic elect...
Molecular doping of organic semiconductors and devices represents an enabling technology for a range...
© 2012 American Institute of Physics. The electronic version of this article is the complete one and...
The discovery of air-stable n-dopants for organic semiconductor materials has been hindered by the n...
Molecular doping makes possible tunable electronic properties of organic semiconductors, yet a lack ...
Organic electronics based on organic semiconductors offer tremendous advantages compared to traditio...
Chemical doping of organic semiconductors using molecular dopants plays a key role in the fabricatio...
Molecular doping is a key technique for realizing high efficient organic light-emitting diodes (OLED...
The field of organic electronics thrives on the hope of enabling low-cost, solution-processed electr...
We study the mechanism of molecular doping of the organic small molecule N,N,N′,N′-tetrakis(4-methox...
In this thesis, we study the physical properties of doped organic semiconductors. We first demonstra...
New air-stable dimeric n-dopants are synthesized and studied in detail with respect to the kinetics ...
In this contribution, for the first time, the polarity of fullerene derivatives is tailored to enhan...