Ballistic Electron Transport Through Organic Semiconductors
Ballistic Electron Emission Microscopy/Spectroscopy on Metal-Organic-Semiconductor Heterostuctures
In the framework of this thesis Ballistic Electron
Emission Microscopy/ Spectroscopy (BEEM/S) was used to
investigate semiconductor heterostructures. Including
organic semiconductors like titanylphthalocyanine
(TiOPc) and hexa-peri hexabenzocoronene...
Emission Microscopy/ Spectroscopy (BEEM/S) was used to
investigate semiconductor heterostructures. Including
organic semiconductors like titanylphthalocyanine
(TiOPc) and hexa-peri hexabenzocoronene...
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In the framework of this thesis Ballistic ElectronEmission Microscopy/ Spectroscopy (BEEM/S) was used to
investigate semiconductor heterostructures. Including
organic semiconductors like titanylphthalocyanine
(TiOPc) and hexa-peri hexabenzocoronene (HBC).
Analyzing the BEEM spectra we find that the TiOPc
increases the BEEM threshold voltage compared to
reference Au/GaAs diodes. The energy dependent
electron transmission properties of TiOPc were
investigated too.
Additionally, an approach for the determination of
the attenuation length of TiOPc as a function of
energy has been successfully introduced. Finally, the
Schottky barrier heights of Au/HBC/GaAs
heterostructures were investigated by BEEM. The high
barrier at the HBC-GaAs interface makes this material
a promising interfacial layer for increasing the open
circuit voltage of GaAs Schottky barrier solar cells.
Autoren-Porträt von Soner Özcan
Soner Özcan, geboren 1977, studierte an der technischen Universität Wien mit Promotion 2008. Seine Hauptarbeitsgebiete sind: Festkörperphysik, Magnetismus, Halbleiterphysik, organische Halbleiter, elektrischer Transport durch Halbleiter Heterostrukturen.
Bibliographische Angaben
- Autor: Soner Özcan
- 2008, 132 Seiten, Kartoniert (TB)
- Verlag: Südwestdeutscher Verlag für Hochschulschriften
- ISBN-10: 3838100328
- ISBN-13: 9783838100326
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