The use of organic compounds as active materials in electronic and optoelectronic devices opens the door to a large number of efficient and potentially low-cost methods for fabricating useful, and, in some cases, complicated structures that are inaccessible by conventional methods using conventional semiconductors. The techniques available for processing and patterning organic materials move far beyond the lithographic methods that govern inorganic devices. This paper discusses the use of a range of processes that are unique to organic materials, including embossing, imprint lithography and capillary molding and printing, using a range of different stamping approaches.close34834
This review provides a survey of lithography techniques and the resist materials employed with these...
This thesis describes different aspects of nanotechnology manufacturing with nanoimprint lithography...
Applications of engineered surface nano-structures span several domains. For emerging technologies s...
Organic electronics is a newly developed field that promises inexpensive, mechanically-flexible, lar...
Patterning organic semiconductors via traditional solution-based microfabrication techniques is prec...
Improvements in organic electronic materials have led to novel device applications, ranging from lar...
We implemented and developed a number of different mechanical patterning methods, including soft hot...
The realization of organic electronic technologies requires the availability of patterning technique...
Publisher Copyright: © 2022 The Authors. Small published by Wiley-VCH GmbH.Advances in material scie...
Thin films made of organic semiconductors (-sexithiophene, PDAS and PBAS) have been printed and the ...
This paper presents a novel process chain for fabrication of replication masters for serial manufact...
Nano-imprint lithography (NIL) is one of the most promising patterning technologies, in which nano- ...
The nanoimprinting is a potential method for submicron scale patterning for various applications, fo...
Organic electronics promises the creation of electronic components on flexible materials at low temp...
The particular challenge of micropatterning organic materials has stimulated numerous approaches for...
This review provides a survey of lithography techniques and the resist materials employed with these...
This thesis describes different aspects of nanotechnology manufacturing with nanoimprint lithography...
Applications of engineered surface nano-structures span several domains. For emerging technologies s...
Organic electronics is a newly developed field that promises inexpensive, mechanically-flexible, lar...
Patterning organic semiconductors via traditional solution-based microfabrication techniques is prec...
Improvements in organic electronic materials have led to novel device applications, ranging from lar...
We implemented and developed a number of different mechanical patterning methods, including soft hot...
The realization of organic electronic technologies requires the availability of patterning technique...
Publisher Copyright: © 2022 The Authors. Small published by Wiley-VCH GmbH.Advances in material scie...
Thin films made of organic semiconductors (-sexithiophene, PDAS and PBAS) have been printed and the ...
This paper presents a novel process chain for fabrication of replication masters for serial manufact...
Nano-imprint lithography (NIL) is one of the most promising patterning technologies, in which nano- ...
The nanoimprinting is a potential method for submicron scale patterning for various applications, fo...
Organic electronics promises the creation of electronic components on flexible materials at low temp...
The particular challenge of micropatterning organic materials has stimulated numerous approaches for...
This review provides a survey of lithography techniques and the resist materials employed with these...
This thesis describes different aspects of nanotechnology manufacturing with nanoimprint lithography...
Applications of engineered surface nano-structures span several domains. For emerging technologies s...