Doping-induced absorption changes of organic molecules on an insulating solid are reported. The charge transfer between alkali metal atoms and individual molecules on a surface leads to new electronic transitions identified with optical absorption spectroscopy. Progressive doping allows the discrimination of neutral, monoanionic, and dianionic molecules in the solid state through examination of the spectra and rate equation modeling
We discuss electrical transport measurements performed on thin films of four different metal phthal...
The mechanism by which molecular dopants donate free charge carriers to the host organic semiconduct...
The interaction of alkali atoms with metal surfaces is reviewed. The peculiar electronic configurati...
Optical and transport properties of high valence impurities in alkali metals are described. The prin...
Here we study the alkali metal induced effects on an ordered and aligned sexiphenyl monolayer on Cu(...
From results of ab initio electronic structure calculations based on density functional theory for a...
Band bending in organic semiconductors, occurring at metal alkali halide cathodes in organic electro...
The authors briefly review the geometric and electronic structure of new solids formed by 'dissolvin...
The ability to introduce charge carriers in organic molecular materials and control their concentrat...
The properties of organic semiconductors make them well-suited for certain applications in electroni...
Using photoemission, inverse photoemission, and electron energy loss spectroscopy, we have probed th...
We present results of ab initio electronic structure calculations based on density functional theory...
88 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 1985.High pressure was used to stud...
We present results of ab initio electronic structure calculations based on density functional theory...
The surface states model is successful in predicting many salient features of charge transfer in ins...
We discuss electrical transport measurements performed on thin films of four different metal phthal...
The mechanism by which molecular dopants donate free charge carriers to the host organic semiconduct...
The interaction of alkali atoms with metal surfaces is reviewed. The peculiar electronic configurati...
Optical and transport properties of high valence impurities in alkali metals are described. The prin...
Here we study the alkali metal induced effects on an ordered and aligned sexiphenyl monolayer on Cu(...
From results of ab initio electronic structure calculations based on density functional theory for a...
Band bending in organic semiconductors, occurring at metal alkali halide cathodes in organic electro...
The authors briefly review the geometric and electronic structure of new solids formed by 'dissolvin...
The ability to introduce charge carriers in organic molecular materials and control their concentrat...
The properties of organic semiconductors make them well-suited for certain applications in electroni...
Using photoemission, inverse photoemission, and electron energy loss spectroscopy, we have probed th...
We present results of ab initio electronic structure calculations based on density functional theory...
88 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 1985.High pressure was used to stud...
We present results of ab initio electronic structure calculations based on density functional theory...
The surface states model is successful in predicting many salient features of charge transfer in ins...
We discuss electrical transport measurements performed on thin films of four different metal phthal...
The mechanism by which molecular dopants donate free charge carriers to the host organic semiconduct...
The interaction of alkali atoms with metal surfaces is reviewed. The peculiar electronic configurati...