6noThe energy level alignment in the heterojunction formed by tetracene and copper phthalocyanine grown on the Ag(111) substrate has been studied for two different sequences of layer stacking. Filled and empty molecular levels as well as charge transfer states have been characterized by combining ultraviolet and two-photon photoemission spectroscopies. It is shown that the layer in contact with the substrate determines the molecular arrangements of the whole system, thus inducing different interface dipoles at the heterojunction, depending on the stacking sequence. Such dipoles strongly influence the exciton dynamics and charge separation at the interface. The accumulation of the charge carriers in the heterojunction has been observed by me...
Molecular orientation-controlled charge transfer has been observed at the organic-organic heterojunc...
Organic hetero-junctions in multi-layered thin film stacks comprising alternate layers of the molecu...
Ultrafast angle-resolved two-photon photoemission (TPPE) is used to probe the electronic structure o...
We reveal the rather complex interplay of contact-induced re-orientation and interfacial electronic ...
The success of many emerging molecular electronics concepts hinges on an atomistic understanding of ...
This work has centered on the interface dipoles arising at heterojunctions between metals, semicondu...
We investigated the interfacial electronic structure of the n-n isotype organic heterojunction forme...
The frontier orbitals of organic semiconductors at interfaces as they relate to organic electronic d...
We investigate the energy level alignment and the Fermi level pinning mechanism at organic donor–acc...
In the present work, charge transfer in organic semiconductors is investigated by means of photoemis...
Resumen del póster presentado a la 13th European Conference on Surface Crystallography and Dynamics,...
Understanding organic semiconductor interfaces is critical to developing organic photovoltaics (OPV)...
In contrast to the common conception that the interfacial energy level alignment is affixed once the...
We have used ultraviolet photoelectron spectroscopy ͑UPS͒ to investigate the interfaces of two organ...
Recently, Niederhausen et al. [Phys. Rev. B 86, 081411 R 2012 ] have reported on the energy level ...
Molecular orientation-controlled charge transfer has been observed at the organic-organic heterojunc...
Organic hetero-junctions in multi-layered thin film stacks comprising alternate layers of the molecu...
Ultrafast angle-resolved two-photon photoemission (TPPE) is used to probe the electronic structure o...
We reveal the rather complex interplay of contact-induced re-orientation and interfacial electronic ...
The success of many emerging molecular electronics concepts hinges on an atomistic understanding of ...
This work has centered on the interface dipoles arising at heterojunctions between metals, semicondu...
We investigated the interfacial electronic structure of the n-n isotype organic heterojunction forme...
The frontier orbitals of organic semiconductors at interfaces as they relate to organic electronic d...
We investigate the energy level alignment and the Fermi level pinning mechanism at organic donor–acc...
In the present work, charge transfer in organic semiconductors is investigated by means of photoemis...
Resumen del póster presentado a la 13th European Conference on Surface Crystallography and Dynamics,...
Understanding organic semiconductor interfaces is critical to developing organic photovoltaics (OPV)...
In contrast to the common conception that the interfacial energy level alignment is affixed once the...
We have used ultraviolet photoelectron spectroscopy ͑UPS͒ to investigate the interfaces of two organ...
Recently, Niederhausen et al. [Phys. Rev. B 86, 081411 R 2012 ] have reported on the energy level ...
Molecular orientation-controlled charge transfer has been observed at the organic-organic heterojunc...
Organic hetero-junctions in multi-layered thin film stacks comprising alternate layers of the molecu...
Ultrafast angle-resolved two-photon photoemission (TPPE) is used to probe the electronic structure o...