In-situ conductivity and Seebeck measurements of highly efficient n-dopants in fullerene C60

We present two organic dimetal complexes Cr<sub>2</sub>(hpp)<sub>4</sub> and W2(hpp)<sub>4</sub> as n-dopants investigated in the model system of fullerene C<sub>60</sub> for the application in organic electronic devices. Conductivity and Seebeck measu...

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Bibliografski detalji
Glavni autori: Menke, T, Ray, D, Meiss, J, Leo, K, Riede, M
Format: Journal article
Jezik:English
Izdano: American Institute of Physics 2012
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author Menke, T
Ray, D
Meiss, J
Leo, K
Riede, M
author_facet Menke, T
Ray, D
Meiss, J
Leo, K
Riede, M
author_sort Menke, T
collection OXFORD
description We present two organic dimetal complexes Cr<sub>2</sub>(hpp)<sub>4</sub> and W2(hpp)<sub>4</sub> as n-dopants investigated in the model system of fullerene C<sub>60</sub> for the application in organic electronic devices. Conductivity and Seebeck measurements on doped layers are carried out in vacuum at different doping concentrations and various substrate temperatures to compare the two dopants. Very high conductivities of up to 4 S/cm are achieved for both organic dopants. The thermal activation energy of the conductivity as well as the measured Seebeck coefficient are found to decrease with increasing doping concentration, indicating a shift of the Fermi level towards the electron transport level of the n-doped C<sub>60</sub>. <em>© 2012 American Institute of Physics.</em>
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spelling oxford-uuid:57a0b86d-5ca3-4d76-bf3c-4e6bb39cbb512022-03-26T16:57:53ZIn-situ conductivity and Seebeck measurements of highly efficient n-dopants in fullerene C60Journal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:57a0b86d-5ca3-4d76-bf3c-4e6bb39cbb51EnglishSymplectic Elements at OxfordAmerican Institute of Physics2012Menke, TRay, DMeiss, JLeo, KRiede, MWe present two organic dimetal complexes Cr<sub>2</sub>(hpp)<sub>4</sub> and W2(hpp)<sub>4</sub> as n-dopants investigated in the model system of fullerene C<sub>60</sub> for the application in organic electronic devices. Conductivity and Seebeck measurements on doped layers are carried out in vacuum at different doping concentrations and various substrate temperatures to compare the two dopants. Very high conductivities of up to 4 S/cm are achieved for both organic dopants. The thermal activation energy of the conductivity as well as the measured Seebeck coefficient are found to decrease with increasing doping concentration, indicating a shift of the Fermi level towards the electron transport level of the n-doped C<sub>60</sub>. <em>© 2012 American Institute of Physics.</em>
spellingShingle Menke, T
Ray, D
Meiss, J
Leo, K
Riede, M
In-situ conductivity and Seebeck measurements of highly efficient n-dopants in fullerene C60
title In-situ conductivity and Seebeck measurements of highly efficient n-dopants in fullerene C60
title_full In-situ conductivity and Seebeck measurements of highly efficient n-dopants in fullerene C60
title_fullStr In-situ conductivity and Seebeck measurements of highly efficient n-dopants in fullerene C60
title_full_unstemmed In-situ conductivity and Seebeck measurements of highly efficient n-dopants in fullerene C60
title_short In-situ conductivity and Seebeck measurements of highly efficient n-dopants in fullerene C60
title_sort in situ conductivity and seebeck measurements of highly efficient n dopants in fullerene c60
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