Large-area electronics (LAE) manufacturing has been a key focus of both academic and industrial research, especially within the last decade. The growing interest is born out of the possibility of adding attractive properties (flexibility, light weight or minimal thickness) at low cost to well-established technologies, such as photovoltaics, displays, sensors or enabling the realisation of emerging technologies such as wearable devices and the Internet of Things. As such there has been great progress in the development of materials specifically designed to be employed in solution processed (plastic) electronics, including organic, transparent metal oxide and nanoscale semiconductors, as well as progress in the deposition methods of these mat...
Flexible electronics opened a new class of future electronics. The foldable, light and durable natur...
Main aim of the research has been the development of alternative lithography strategies for the fabr...
University Ph.D. dissertation. July 2011. Major: Electrical Engineering. Advisor: Heiko O. Jacobs. 1...
Large-area manufacturing of flexible nanoscale electronics has long been sought by the printed elect...
As the feature size of devices in the electronics industry has hit the nanoscale, device fabrication...
As the resolution of devices in the electronics industry has hit the nanoscale, device fabrication c...
Recent advancements in the semiconductor industry have been driven by the extreme downscaling of dev...
In Large-Area Electronics (LAE) there are multiple processing methods to take advantage of. Componen...
Solution-processible electronics represent an emerging technology that will revolutionise the field ...
Large-area electronics, including printable and flexible electronics, is an emerging concept which a...
The Printed Electronics (PE) is expected to revolutionise the way electronics will be manufactured i...
We report the development of coplanar green colour organic light-emitting diodes (OLEDs) based on as...
The use of orientated semiconducting nanowires as the active material in solution processable printa...
The use of orientated semiconducting nanowires as the active material in solution processable printa...
<div><p>Flexible electronics opened a new class of future electronics. The foldable, light and durab...
Flexible electronics opened a new class of future electronics. The foldable, light and durable natur...
Main aim of the research has been the development of alternative lithography strategies for the fabr...
University Ph.D. dissertation. July 2011. Major: Electrical Engineering. Advisor: Heiko O. Jacobs. 1...
Large-area manufacturing of flexible nanoscale electronics has long been sought by the printed elect...
As the feature size of devices in the electronics industry has hit the nanoscale, device fabrication...
As the resolution of devices in the electronics industry has hit the nanoscale, device fabrication c...
Recent advancements in the semiconductor industry have been driven by the extreme downscaling of dev...
In Large-Area Electronics (LAE) there are multiple processing methods to take advantage of. Componen...
Solution-processible electronics represent an emerging technology that will revolutionise the field ...
Large-area electronics, including printable and flexible electronics, is an emerging concept which a...
The Printed Electronics (PE) is expected to revolutionise the way electronics will be manufactured i...
We report the development of coplanar green colour organic light-emitting diodes (OLEDs) based on as...
The use of orientated semiconducting nanowires as the active material in solution processable printa...
The use of orientated semiconducting nanowires as the active material in solution processable printa...
<div><p>Flexible electronics opened a new class of future electronics. The foldable, light and durab...
Flexible electronics opened a new class of future electronics. The foldable, light and durable natur...
Main aim of the research has been the development of alternative lithography strategies for the fabr...
University Ph.D. dissertation. July 2011. Major: Electrical Engineering. Advisor: Heiko O. Jacobs. 1...