Organic and organometallic electronic materials continue to attract considerable attention among researchers due to their cost effectiveness, high flexibility, low temperature processing conditions and the continuous emergence of new semiconducting materials with tailored electronic properties. In addition, organic semiconductors can be used in a variety of important technological devices such as solar cells, field-effect transistors (FETs), flash memory, radio frequency identification (RFID) tags, light emitting diodes (LEDs), etc. However, organic materials have thus far not achieved the reliability and carrier mobility obtainable with inorganic silicon-based devices. Hence, there is a need for finding alternative electronic materials oth...
The rapidly developing field of organic electronics has stimulated intensive research into the funda...
Metallo-organic molecules with highly conjugated -electrons, like phthalocyanines (Pc\u2019s), are w...
In this thesis, I present a comprehensive study of the interfacial electronic structure and thin fil...
PhD Thesis by: Afaf El-Sayed Abd El-Mottaleb.[EN]: In 1987, the Nobel Prize in chemistry was awarded...
Organic electronics is a field covering all applications and devices where one or several of the act...
Undoped, conjugated, organic molecules and polymers possess properties of semiconductors, including ...
The field of organic-based opto-electronic devices such as organic light- emitting diodes (OLEDs) or...
The research embodied in this text involves the characterization and optimization of novel materials...
The use of organic materials to design electronic devices has actually presented a broad interest be...
The organometallic complexes of transition metal M = Cu(I), Ag(I), Au(I) with d10 electronic configu...
Organic semiconducting materials play an important role in the fabrication of high performance organ...
Organic semiconductors find a wide range of applications, such as in organic light emitting diodes, ...
textOrganic and inorganic/organic hybrid material development is essential for the advancement of el...
Control of the energetics at interfaces is one of the key steps that improve the efficiency of light...
Organic molecules with extended -conjugation can display unusual electronic properties, traditionall...
The rapidly developing field of organic electronics has stimulated intensive research into the funda...
Metallo-organic molecules with highly conjugated -electrons, like phthalocyanines (Pc\u2019s), are w...
In this thesis, I present a comprehensive study of the interfacial electronic structure and thin fil...
PhD Thesis by: Afaf El-Sayed Abd El-Mottaleb.[EN]: In 1987, the Nobel Prize in chemistry was awarded...
Organic electronics is a field covering all applications and devices where one or several of the act...
Undoped, conjugated, organic molecules and polymers possess properties of semiconductors, including ...
The field of organic-based opto-electronic devices such as organic light- emitting diodes (OLEDs) or...
The research embodied in this text involves the characterization and optimization of novel materials...
The use of organic materials to design electronic devices has actually presented a broad interest be...
The organometallic complexes of transition metal M = Cu(I), Ag(I), Au(I) with d10 electronic configu...
Organic semiconducting materials play an important role in the fabrication of high performance organ...
Organic semiconductors find a wide range of applications, such as in organic light emitting diodes, ...
textOrganic and inorganic/organic hybrid material development is essential for the advancement of el...
Control of the energetics at interfaces is one of the key steps that improve the efficiency of light...
Organic molecules with extended -conjugation can display unusual electronic properties, traditionall...
The rapidly developing field of organic electronics has stimulated intensive research into the funda...
Metallo-organic molecules with highly conjugated -electrons, like phthalocyanines (Pc\u2019s), are w...
In this thesis, I present a comprehensive study of the interfacial electronic structure and thin fil...