Presentation 1997/5/20
Estimation of charge transfer degree in field effect transistors using donor and acceptor stacked layers
Yasuhito SHIRATORI, Masaaki IIZUKA, Shigekazu KUNIYOSHI, Kazuhiro KUDO, Kuniaki TANAKA,
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Abstract(in English) We have fabricated field effect transistors(FETs) using stacked layers of TMTSF(donor) and TCNQ(acceptor). We tried to control electrical conductivity of charge transfer complex layers in donor and acceptor stacked layers by applying gate voltage. Both TMTSF/TCNQ and TCNQ/TMTSF stacked FETs have a large transconductance compared with that of single layer FETs. The charge transfer degree of charge transfer complex were estimated by infrared spectroscopy and the C≡N stretching mode in TCNQ molecule showed a peak shift. These results suggest the change of electronic conductivity due to the charge transfer.
Keyword(in Japanese) (See Japanese page)
Keyword(in English) TMTSF / TCNQ / charge transfer complexes / field effect transistor
Paper # OME97-13
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Committee OME
Conference Date 1997/5/20(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) Estimation of charge transfer degree in field effect transistors using donor and acceptor stacked layers
Sub Title (in English)
Keyword(1) TMTSF
Keyword(2) TCNQ
Keyword(3) charge transfer complexes
Keyword(4) field effect transistor
1st Author's Name Yasuhito SHIRATORI
1st Author's Affiliation Department of Electrical and Electronics Engineering, Chiba University()
2nd Author's Name Masaaki IIZUKA
2nd Author's Affiliation Department of Electrical and Electronics Engineering, Chiba University
3rd Author's Name Shigekazu KUNIYOSHI
3rd Author's Affiliation Department of Electrical and Electronics Engineering, Chiba University
4th Author's Name Kazuhiro KUDO
4th Author's Affiliation Department of Electrical and Electronics Engineering, Chiba University
5th Author's Name Kuniaki TANAKA
5th Author's Affiliation Department of Electrical and Electronics Engineering, Chiba University
Date 1997/5/20
Paper # OME97-13
Volume (vol) vol.97
Number (no) 47
Page pp.pp.-
#Pages 5
Date of Issue