The use of conjugated polymers as active media in organic semiconductor devices demands a deep knowledge of the electronic processes involved at molecular level. Here we report the results obtained from self-consistent molecular dynamics calculations at the complete neglect of differential overlap level concerning intra-chain charge mobility for two well known polymers: polydiacetylene and poly(p-phenylene vinylene)
AbstractA model reduction scheme for polymer semiconductors is presented that can be utilized to com...
We have used a self-consistent quantum molecular dynamics approach to calculate the mobility of both...
The research field of organic electronics experiences tremendous developments since the discovery of...
The softness of conjugated polymers leads to strong coupling between polymer's electrons and lattice...
We use a molecular dynamics method with semi-empirical quantum chemistry at the complete neglect of ...
We have used a self-consistent quantum molecular dynamics approach to calculate the mobility of both...
Conjugated polymers represent a class of materials which exhibit excellent potential as versatile an...
The softness of conjugated polymers leads to strong coupling between polymer’s electrons and lattice...
Introducing methoxy electron donor groups into a poly(para-phenylene vinylene) (PPV) chain will lead...
Conjugated polymers show interesting properties that make them appropriated for nanoelectronics. Sev...
Abstract. Semiconductor polymers are successfully implemented in a broad range of applications such ...
We describe charge transport along a polymer chain with a generic theoretical model depending in pri...
In recent years, poly (p-phenylenevinylene) (PPV) and its derivatives have attracted much interest d...
The growing interest in using organic materials, specifically polymers, as active media for optoelec...
The growing interest in using organic materials, specifically polymers, as active media for optoelec...
AbstractA model reduction scheme for polymer semiconductors is presented that can be utilized to com...
We have used a self-consistent quantum molecular dynamics approach to calculate the mobility of both...
The research field of organic electronics experiences tremendous developments since the discovery of...
The softness of conjugated polymers leads to strong coupling between polymer's electrons and lattice...
We use a molecular dynamics method with semi-empirical quantum chemistry at the complete neglect of ...
We have used a self-consistent quantum molecular dynamics approach to calculate the mobility of both...
Conjugated polymers represent a class of materials which exhibit excellent potential as versatile an...
The softness of conjugated polymers leads to strong coupling between polymer’s electrons and lattice...
Introducing methoxy electron donor groups into a poly(para-phenylene vinylene) (PPV) chain will lead...
Conjugated polymers show interesting properties that make them appropriated for nanoelectronics. Sev...
Abstract. Semiconductor polymers are successfully implemented in a broad range of applications such ...
We describe charge transport along a polymer chain with a generic theoretical model depending in pri...
In recent years, poly (p-phenylenevinylene) (PPV) and its derivatives have attracted much interest d...
The growing interest in using organic materials, specifically polymers, as active media for optoelec...
The growing interest in using organic materials, specifically polymers, as active media for optoelec...
AbstractA model reduction scheme for polymer semiconductors is presented that can be utilized to com...
We have used a self-consistent quantum molecular dynamics approach to calculate the mobility of both...
The research field of organic electronics experiences tremendous developments since the discovery of...