This book deals with basic aspects of polymer electronics and optoelectronics. There is an enormous world-wide effort both in basic scientific research as well as in industrial development in the area of organic electronics. It is becoming increasingly clear that, if devices based on organic materials are ever going to have a significant relevance beyond being a cheap replacement for inorganic semiconductors, there will be a need to understand interface formation, film growth and functionality. A control of these aspects will allow the realisation of totally new device concepts exploiting the enormous flexibility inherent in organic chemistry. In this book we focus on oligomeric/molecular films as we believe that the control of molecular st...
This thesis explores the self-assembly, surface interactions and electronic properties of functional...
This thesis explores the self-assembly, surface interactions and electronic properties of functional...
This thesis explores the self-assembly, surface interactions and electronic properties of functional...
The development of organic devices with nanoscale features is becoming the focus of intense research...
The notion 'molecular electronics' has been used more frequently since the 1970s and summarizes a se...
The development of electronics devices based on organic materials presents one of the most exciting ...
Organic electronics is a rapidly evolving field with vast number of applications having high potenti...
Organic molecules are currently being investigated with regard to their application as active compon...
Optoelectronic devices are being developed at an extraordinary rate. Organic light emitting diodes, ...
Understanding charge transport is the base for the development of functional optoelectronic devices ...
The functionality of organic field effect transistors resides in their interfaces. Highly ordered mo...
Even though the term ‘organic electronics ’ evokes rather organic devices, a significant part of its...
Organic electronics is a field covering all applications and devices where one or several of the act...
Bernard Kippelen is the Joseph M. Pettit Professor at the School of Electrical and Computer Engineer...
Organic molecules with extended -conjugation can display unusual electronic properties, traditionall...
This thesis explores the self-assembly, surface interactions and electronic properties of functional...
This thesis explores the self-assembly, surface interactions and electronic properties of functional...
This thesis explores the self-assembly, surface interactions and electronic properties of functional...
The development of organic devices with nanoscale features is becoming the focus of intense research...
The notion 'molecular electronics' has been used more frequently since the 1970s and summarizes a se...
The development of electronics devices based on organic materials presents one of the most exciting ...
Organic electronics is a rapidly evolving field with vast number of applications having high potenti...
Organic molecules are currently being investigated with regard to their application as active compon...
Optoelectronic devices are being developed at an extraordinary rate. Organic light emitting diodes, ...
Understanding charge transport is the base for the development of functional optoelectronic devices ...
The functionality of organic field effect transistors resides in their interfaces. Highly ordered mo...
Even though the term ‘organic electronics ’ evokes rather organic devices, a significant part of its...
Organic electronics is a field covering all applications and devices where one or several of the act...
Bernard Kippelen is the Joseph M. Pettit Professor at the School of Electrical and Computer Engineer...
Organic molecules with extended -conjugation can display unusual electronic properties, traditionall...
This thesis explores the self-assembly, surface interactions and electronic properties of functional...
This thesis explores the self-assembly, surface interactions and electronic properties of functional...
This thesis explores the self-assembly, surface interactions and electronic properties of functional...