When Electron Transfer Meets Electron Transport in Redox-Active Molecular Nanojunctions
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作者:
Janin, Marion
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Univ Paris Diderot, NanoElectroChem Grp, ITODYS, UMR CNRS 7086, F-75205 Paris 13, FranceUniv Paris Diderot, NanoElectroChem Grp, ITODYS, UMR CNRS 7086, F-75205 Paris 13, France
Janin, Marion
[1
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Ghilane, Jalal
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Univ Paris Diderot, NanoElectroChem Grp, ITODYS, UMR CNRS 7086, F-75205 Paris 13, FranceUniv Paris Diderot, NanoElectroChem Grp, ITODYS, UMR CNRS 7086, F-75205 Paris 13, France
Ghilane, Jalal
[1
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Lacroix, Jean-Christophe
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Univ Paris Diderot, NanoElectroChem Grp, ITODYS, UMR CNRS 7086, F-75205 Paris 13, FranceUniv Paris Diderot, NanoElectroChem Grp, ITODYS, UMR CNRS 7086, F-75205 Paris 13, France
Lacroix, Jean-Christophe
[1
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机构:
[1] Univ Paris Diderot, NanoElectroChem Grp, ITODYS, UMR CNRS 7086, F-75205 Paris 13, France
A scanning electrochemical microscope (SECM) was used to arrange two microelectrodes face-to-face separated by a micrometric gap. Polyaniline (PANI) was deposited electrochemically from the SECM tip side until it bridged the two electrodes. The junctions obtained were characterized by following the current through the PANI as a function of its electrochemical potential measured versus a reference electrode acting as a gate electrode in a solid-state transistor. PANI nano-junctions showed conductances below 100 nS in the oxidized state, indicating control of the charge transport within the whole micrometric gap by a limited number of PAN! wires. The SECM configuration makes it possible to observe in the same experiment and in the same current range the electron-transfer and electron-transport processes. These two phenomena are distinguished here and characterized by following the variation of the current with the bias voltage and the scan rate. The electron-transfer current changes with the scan rate, while the charge-transport current varies with the bias voltage. Finally, despite the initially micrometric gap, a junction where the conductance is controlled by a single oligoaniline strand is achieved.
机构:
Univ Tokyo, Dept Appl Chem, Bunkyo Ku, 7-3-1 Hongo, Tokyo 1138656, JapanUniv Tokyo, Dept Appl Chem, Bunkyo Ku, 7-3-1 Hongo, Tokyo 1138656, Japan
Kaneko, Masahiro
Ishikawa, Masahito
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Univ Tokyo, Res Ctr Adv Sci & Technol, Meguro Ku, 4-6-1 Komaba, Tokyo 1538904, JapanUniv Tokyo, Dept Appl Chem, Bunkyo Ku, 7-3-1 Hongo, Tokyo 1138656, Japan
Ishikawa, Masahito
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Hashimoto, Kazuhito
Nakanishi, Shuji
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Osaka Univ, Res Ctr Solar Energy Chem, 1-3 Machikaneyama, Toyonaka, Osaka 5608531, JapanUniv Tokyo, Dept Appl Chem, Bunkyo Ku, 7-3-1 Hongo, Tokyo 1138656, Japan
机构:
Nagoya Univ, Inst Mat & Syst Sustainabil, Nagoya, Aichi 4648603, JapanNagoya Univ, Inst Mat & Syst Sustainabil, Nagoya, Aichi 4648603, Japan
Pham, Duyen Minh
Oji, Hiroshi
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Nagoya Univ, Synchrotron Radiat Res Ctr, Nagoya, Aichi 4648603, Japan
Aichi Sci & Technol Fdn, Aichi Synchrotron Radiat Ctr, Nagoya, Aichi 4890965, JapanNagoya Univ, Inst Mat & Syst Sustainabil, Nagoya, Aichi 4648603, Japan
Oji, Hiroshi
Yagi, Shinya
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Nagoya Univ, Inst Mat & Syst Sustainabil, Nagoya, Aichi 4648603, Japan
Nagoya Univ, Grad Sch Engn, Dept Energy Engn, Nagoya, Aichi 4648603, JapanNagoya Univ, Inst Mat & Syst Sustainabil, Nagoya, Aichi 4648603, Japan
Yagi, Shinya
Ogawa, Satoshi
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Nagoya Univ, Grad Sch Engn, Dept Energy Engn, Nagoya, Aichi 4648603, JapanNagoya Univ, Inst Mat & Syst Sustainabil, Nagoya, Aichi 4648603, Japan