The investigation of charge transport in organic nanocrystals is essential to understand nanoscale physical properties of organic systems and the development of novel organic nanodevices. In this work, we fabricate organic nanocrystal diodes contacted by rolled-up robust nanomembranes. The organic nanocrystals consist of vanadyl phthalocyanine and copper hexadecafluorophthalocyanine heterojunctions. The temperature dependent charge transport through organic nanocrystals was investigated to reveal the transport properties of ohmic and space-charge-limited current under different conditions, for instance, temperature and bia
Bottom-gate, bottom-contact organic thin film transistors (OTFTs) were fabricated using solvent solu...
Improving devices incorporating solution-processed nanocrystal-based semiconductors requires a bette...
DoctorThere are rising demands for developing electronics and energy storage system for more widespr...
The investigation of charge transport in organic nanocrystals is essential to understand nanoscale p...
Organic materials such as phthalocyanine-based systems present a great potential for organic device ...
We report charge transport measurements in nanoscale vertical pillar structures incorporating ultrat...
The physical limitations of miniaturization of the traditional silicon-based electronic devices have...
Bulky organic semiconductors have been widely applied on a variety of devices including transistors,...
The implementation of organic building blocks into nanoelectronics devices is finding increased inte...
Organic thin-film transistors (OTFTs) have received increasing attention because of their potential ...
Organic electronics comprises a field of study at the intersection of chemistry, physics, electrical...
While organic semiconductors provide tantalizing possibilities for low-cost, light-weight, flexible ...
The authors study the contact resistance of gold-pentacene interface by applying the transmission-li...
Penner P, Zhang X, Marschewski E, et al. Charge Transport through Carbon Nanomembranes. The Journal ...
This thesis is based on results obtained from experiments designed for a consistent study of charge ...
Bottom-gate, bottom-contact organic thin film transistors (OTFTs) were fabricated using solvent solu...
Improving devices incorporating solution-processed nanocrystal-based semiconductors requires a bette...
DoctorThere are rising demands for developing electronics and energy storage system for more widespr...
The investigation of charge transport in organic nanocrystals is essential to understand nanoscale p...
Organic materials such as phthalocyanine-based systems present a great potential for organic device ...
We report charge transport measurements in nanoscale vertical pillar structures incorporating ultrat...
The physical limitations of miniaturization of the traditional silicon-based electronic devices have...
Bulky organic semiconductors have been widely applied on a variety of devices including transistors,...
The implementation of organic building blocks into nanoelectronics devices is finding increased inte...
Organic thin-film transistors (OTFTs) have received increasing attention because of their potential ...
Organic electronics comprises a field of study at the intersection of chemistry, physics, electrical...
While organic semiconductors provide tantalizing possibilities for low-cost, light-weight, flexible ...
The authors study the contact resistance of gold-pentacene interface by applying the transmission-li...
Penner P, Zhang X, Marschewski E, et al. Charge Transport through Carbon Nanomembranes. The Journal ...
This thesis is based on results obtained from experiments designed for a consistent study of charge ...
Bottom-gate, bottom-contact organic thin film transistors (OTFTs) were fabricated using solvent solu...
Improving devices incorporating solution-processed nanocrystal-based semiconductors requires a bette...
DoctorThere are rising demands for developing electronics and energy storage system for more widespr...