The architecture of the contacting interface between organic molecular semiconductors and metallic or insulating substrates determines its cooperative properties such as the charge injection and the charge-carrier mobility of organic thin-film devices. This paper contributes a systematic approach to reveal the evolution of the different structural phases of pentacene on Cu(110) while using the same growth conditions. Complementary measurement techniques such as scanning tunneling microscopy and low-energy electron diffraction together with ab initio calculations are applied to reveal the complex multiphase behavior of this system at room temperature. For coverages between 0.2 and 1 monolayer (ML) a complex multiphase behavior comprising fiv...
The atomic structure of the pentacene/Cu(110) interface for coverages at and just below one monolaye...
The self organization of pentacene to form ordered film structures can be driven by the large struct...
The interaction of pentacene molecules in contact with the Cu(119) stepped surface has been directly...
The architecture of the contacting interface between organic molecular semiconductors and metallic o...
The architecture of the contacting interface between organic molecular semiconductors and metallic o...
A single layer (SL) of pentacene molecules deposited on the Cu(119) surface and on an organic selfas...
A single layer (SL) of pentacene molecules deposited on the Cu(119) surface and on an organic self- ...
A single layer (SL) of pentacene molecules deposited on the Cu (119) surface and on an organic self-...
The morphology and electronic structure of pentacene (Pn) deposited on Cu(111) was studied using sca...
The structural profiles and electronic properties of pentacene (C22H14) multilayers on Ag(111) surfa...
Structure, growth, thermal stability, and electronic properties of thin films of the fully fluorinat...
The atomic structure of the pentacene/Cu(110) interface for coverages at and just below one monolaye...
The atomic structure of the pentacene/Cu(110) interface for coverages at and just below one monolaye...
The atomic structure of the pentacene/Cu(110) interface for coverages at and just below one monolaye...
The energetic, the morphology, the interface dipole formation, and the electronic states of pentacen...
The atomic structure of the pentacene/Cu(110) interface for coverages at and just below one monolaye...
The self organization of pentacene to form ordered film structures can be driven by the large struct...
The interaction of pentacene molecules in contact with the Cu(119) stepped surface has been directly...
The architecture of the contacting interface between organic molecular semiconductors and metallic o...
The architecture of the contacting interface between organic molecular semiconductors and metallic o...
A single layer (SL) of pentacene molecules deposited on the Cu(119) surface and on an organic selfas...
A single layer (SL) of pentacene molecules deposited on the Cu(119) surface and on an organic self- ...
A single layer (SL) of pentacene molecules deposited on the Cu (119) surface and on an organic self-...
The morphology and electronic structure of pentacene (Pn) deposited on Cu(111) was studied using sca...
The structural profiles and electronic properties of pentacene (C22H14) multilayers on Ag(111) surfa...
Structure, growth, thermal stability, and electronic properties of thin films of the fully fluorinat...
The atomic structure of the pentacene/Cu(110) interface for coverages at and just below one monolaye...
The atomic structure of the pentacene/Cu(110) interface for coverages at and just below one monolaye...
The atomic structure of the pentacene/Cu(110) interface for coverages at and just below one monolaye...
The energetic, the morphology, the interface dipole formation, and the electronic states of pentacen...
The atomic structure of the pentacene/Cu(110) interface for coverages at and just below one monolaye...
The self organization of pentacene to form ordered film structures can be driven by the large struct...
The interaction of pentacene molecules in contact with the Cu(119) stepped surface has been directly...