Thin Films and Surface Patterning with BEDT-TTF Based Charge Transfer Salts

Densely covered (ET)X{sub 2} thin films can be selectively electrodeposited on gold electrodes. The insulating (ET)X{sub 2} films are converted to (ET){sub 2}X conductive films through a novel conproportionation reaction. Both ET and ET salt patterns can be prepared with the PDMS stamping technique...

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Veröffentlicht in:Synthetic metals 2003-04, Vol.137 (1), p.1201-1202
Hauptverfasser: Wang, H.Hau, Han, Catherine Y., Noh, Dong-Youn, Shin, Kyong-Soon, Willing, Gerold A., Geiser, Urs
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container_end_page 1202
container_issue 1
container_start_page 1201
container_title Synthetic metals
container_volume 137
creator Wang, H.Hau
Han, Catherine Y.
Noh, Dong-Youn
Shin, Kyong-Soon
Willing, Gerold A.
Geiser, Urs
description Densely covered (ET)X{sub 2} thin films can be selectively electrodeposited on gold electrodes. The insulating (ET)X{sub 2} films are converted to (ET){sub 2}X conductive films through a novel conproportionation reaction. Both ET and ET salt patterns can be prepared with the PDMS stamping technique with use of an ET derivative with a dodecanethiol chain for surface derivatization. These solution procedures open up the possibility to prepare conductive and superconductive charge-transfer salt thin films as well as patterns.
doi_str_mv 10.1016/S0379-6779(02)00988-8
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source ScienceDirect Journals (5 years ago - present)
subjects BEDT-TTF
CHAINS
Cross-disciplinary physics: materials science
rheology
DERIVATIZATION
Electrodeposition, electroplating
ELECTRODES
Exact sciences and technology
GOLD
MATERIALS SCIENCE
Methods of deposition of films and coatings
film growth and epitaxy
Physics
Surface cleaning, etching, patterning
Surface treatments
THIN FILMS
title Thin Films and Surface Patterning with BEDT-TTF Based Charge Transfer Salts
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