Organic-inorganic hybrid electronic devices (HEDs) offer opportunities for functionalities that are not easily obtainable with either organic or inorganic materials individually. In the strive for down-scaling the channel length in planar geometry HEDs, the best results were achieved with electron beam lithography or nanoimprint lithography. Their application on the wafer level is, however, cost intensive and time consuming. Here, we propose trench isolated electrode (TIE) technology as a fast, cost effective, wafer-level approach for the fabrication of planar HEDs with electrode gaps in the range of 100 nm. We demonstrate that the formation of the organic channel can be realized by deposition from solution as well as by the thermal evapora...
Bernard Kippelen is the Joseph M. Pettit Professor at the School of Electrical and Computer Engineer...
The concept of chemical orthogonality has long been practiced in the field of inorganic semiconducto...
Organic electronics is a research field that deals with electronic devices which components are part...
Die organisch-anorganische Hybridelektronik bietet verschiedene Möglichkeiten zur Entwicklung neuart...
Organic semiconductors have potential applications in the spintronics field due to the weak spin sca...
The implementation of organic building blocks into nanoelectronics devices is finding increased inte...
Organic-based photonics and molecular electronics are attracting an increasing interest in modern sc...
Organic semiconductors have the advantage over traditional inorganic semiconductors, such as Si or G...
Some applications of organic light-emitting diodes (OLEDs) require large area, high light output, an...
The implementation of silver nanowires (NWs) as flexible transparent electrodes (FTEs) in solution-p...
Organic semiconductors are considered as attractive materials for spintronic applications. One of th...
International audienceDespite the recognized potential of organic molecules for electronics, only ve...
Electronic transport through single molecules has been studied extensively by academic(1-8) and indu...
The main goal of molecular electronics is the fabrication of electronic devices based on the electro...
Patterning organic semiconductors via traditional solution-based microfabrication techniques is prec...
Bernard Kippelen is the Joseph M. Pettit Professor at the School of Electrical and Computer Engineer...
The concept of chemical orthogonality has long been practiced in the field of inorganic semiconducto...
Organic electronics is a research field that deals with electronic devices which components are part...
Die organisch-anorganische Hybridelektronik bietet verschiedene Möglichkeiten zur Entwicklung neuart...
Organic semiconductors have potential applications in the spintronics field due to the weak spin sca...
The implementation of organic building blocks into nanoelectronics devices is finding increased inte...
Organic-based photonics and molecular electronics are attracting an increasing interest in modern sc...
Organic semiconductors have the advantage over traditional inorganic semiconductors, such as Si or G...
Some applications of organic light-emitting diodes (OLEDs) require large area, high light output, an...
The implementation of silver nanowires (NWs) as flexible transparent electrodes (FTEs) in solution-p...
Organic semiconductors are considered as attractive materials for spintronic applications. One of th...
International audienceDespite the recognized potential of organic molecules for electronics, only ve...
Electronic transport through single molecules has been studied extensively by academic(1-8) and indu...
The main goal of molecular electronics is the fabrication of electronic devices based on the electro...
Patterning organic semiconductors via traditional solution-based microfabrication techniques is prec...
Bernard Kippelen is the Joseph M. Pettit Professor at the School of Electrical and Computer Engineer...
The concept of chemical orthogonality has long been practiced in the field of inorganic semiconducto...
Organic electronics is a research field that deals with electronic devices which components are part...