Technische Universität Dresden
N-type doping of organic thin films using a novel class of dopants
Abstract
dc:description.abstractI present a new approach to stable n-type doping of organic matrices using organic dopants. In order to circumvent stability limitations of strong organic donors, I produce the donor from a stable precursor compound in situ. As an example, the cationic dye pyronin B chloride is studied as a dopant in an 1,4,5,8-naphthalene tetracarboxylic dianhydride (NTCDA) matrix. A field effect and conductivity study of a series of doped NTCDA samples is carried out. It proves the increase of the electron density with the doping concentration. Conductivities up to 1.9*10^-4 S/cm are obtained for doped NTCDA, which is two orders of magnitude higher than the conductivity of NTCDA doped with (bis(ethylenedithio)-tetrathiafulvalene (BEDT- TTF) as investigated previously [A. Nollau, M. Pfeiffer, T. Fritz, K. Leo, J. Appl. Phys. 87, 4340 (2000)], and four orders of magnitude higher than nominally undoped NTCDA films. The experimental trends in the field effect study are interpreted in terms of transport in disordered solids. Detailed mass spectroscopic investigation are carried out to investigate the sublimation behaviour of the organic salt pyronin B chloride. We conclude that mainly HCl and the leuco base of pyronin B is present in the gas phase. Optical absorption spectroscopy shows that the leuco base is transformed to the pyronin B cation in air. A similar reaction is observed for mixed thin films of pyronin B and tetracyano quinodimethane. This supports the image of the doping process being due to an electron transfer from the pyronin to the matrix molecules. The formation of the leuco base and subsequent oxidation to the pyronin B cation is supported by Fourier transform infrared (FTIR) absorption spectroscopy. Doping experiments with other matrices reveal that the doping effect is universal for all materials of moderate acceptor strength. Matrices such as perylene-3,4,9,10-tetracarboxylic dimethyl diimide (Me-PTCDI) and fullerene C60 can be successfully doped. These compounds are frequently employed electron transport materials in organic solar cells. Therefore, such devices can be improved by this new doping approach.
Degree
thesis:*- Level thesis:degree_level
- thesis.doctoral
- Grantor dc:publisher
- Technische Universität Dresden
- Year
- 2003
Author and committee
dc:creator, dc:contributor.*- Author dc:creator
-
- Werner, Ansgar
- Contributors dc:contributor
-
- Leo, Karl
- Armstrong, Neil
- Fink, Jörg