Presentation 1999/9/14
Electrical transport property of Single Electron Tunneling Device using Dendrite Macromolecules
Tohru Kubota, Shiyoshi Yokoyama, Tatsuo Nakahama, Shinro Mashiko, Mitsumasa Iwamoto,
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Abstract(in English) We have studied electron tunneling properties in single dendrite macromolecules sandwiched between polyimide electron tunneling barriers. We have observed voltage steps in the currentvoltage characteristics of these devices with voltage widths of e/C (C : capacitance of the molecules) at the temperature between 5-50K, and this result was discussed based on a single electron tunneling process. Finally, we discussed the light assisted single electron tunneling devices using dye dendrite macromolecules. This represents the first observation of the so-called Coulomb staircase in the organic material devices.
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Keyword(in English) Single Electron tunneling / Polyimide / Dendrite molecules
Paper # OME99-69
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Committee OME
Conference Date 1999/9/14(1days)
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Registration To Organic Material Electronics (OME)
Language JPN
Title (in Japanese) (See Japanese page)
Sub Title (in Japanese) (See Japanese page)
Title (in English) Electrical transport property of Single Electron Tunneling Device using Dendrite Macromolecules
Sub Title (in English)
Keyword(1) Single Electron tunneling
Keyword(2) Polyimide
Keyword(3) Dendrite molecules
1st Author's Name Tohru Kubota
1st Author's Affiliation Kansai Advanced Research Center, Communication Research Laboratory()
2nd Author's Name Shiyoshi Yokoyama
2nd Author's Affiliation Kansai Advanced Research Center, Communication Research Laboratory
3rd Author's Name Tatsuo Nakahama
3rd Author's Affiliation Kansai Advanced Research Center, Communication Research Laboratory
4th Author's Name Shinro Mashiko
4th Author's Affiliation Kansai Advanced Research Center, Communication Research Laboratory
5th Author's Name Mitsumasa Iwamoto
5th Author's Affiliation Kansai Advanced Research Center, Communication Research Laboratory
Date 1999/9/14
Paper # OME99-69
Volume (vol) vol.99
Number (no) 292
Page pp.pp.-
#Pages 6
Date of Issue