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  1. 数理物質系 (Faculty of Pure and Applied Sciences)
  2. 谷中 淳 (Taninaka Atsushi)
  1. 数理物質系 (Faculty of Pure and Applied Sciences)
  2. 岡田 晋 (Okada Susumu)
  1. 数理物質系 (Faculty of Pure and Applied Sciences)
  2. 重川 秀実 (Shigekawa Hidemi)
  1. 数理物質系 (Faculty of Pure and Applied Sciences)
  2. 武内 修 (Takeuchi Osamu)
  1. 数理物質系 (Faculty of Pure and Applied Sciences)
  2. 吉田 昭二 (Yoshida Syoji)
  1. コンテンツタイプ (Contents Type)
  2. 雑誌発表論文等 (Journal article, etc.)
  3. N~
  4. Nature communications

Mechanically activated switching of Si-based single-molecule junction as imaged with three-dimensional dynamic probe

http://hdl.handle.net/2241/00132408
d4c1dcf2-cae2-46a5-aaae-4f106711d8d1
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NC_6-8465.pdf NC_6-8465 (5.2 MB)
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item type Journal Article(1)
公開日 2016-01-06
タイトル
タイトル Mechanically activated switching of Si-based single-molecule junction as imaged with three-dimensional dynamic probe
言語
言語 eng
資源タイプ
タイプ journal article
著者 Nakamura, Miki

× Nakamura, Miki

WEKO 124379

Nakamura, Miki

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Yoshida, Shoji

× Yoshida, Shoji

WEKO 124380

Yoshida, Shoji

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Katayama, Tomoki

× Katayama, Tomoki

WEKO 124381

Katayama, Tomoki

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Taninaka, Atsushi

× Taninaka, Atsushi

WEKO 124382

Taninaka, Atsushi

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Mera, Yutaka

× Mera, Yutaka

WEKO 124383

Mera, Yutaka

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Okada, Susumu

× Okada, Susumu

WEKO 124384

Okada, Susumu

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Takeuchi, Osamu

× Takeuchi, Osamu

WEKO 124385

Takeuchi, Osamu

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Shigekawa, Hidemi

× Shigekawa, Hidemi

WEKO 124386

Shigekawa, Hidemi

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著者別名 吉田, 昭二

× 吉田, 昭二

WEKO 205037
e-Rad 90447227
筑波大学研究者総覧 0000000673

吉田, 昭二

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谷中, 淳

× 谷中, 淳

WEKO 124388

谷中, 淳

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岡田, 晋

× 岡田, 晋

WEKO 25
e-Rad 70302388
筑波大学研究者総覧 0000000690

岡田, 晋

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武内, 修

× 武内, 修

WEKO 204486
e-Rad 20361321
筑波大学研究者総覧 0000000689

武内, 修

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重川, 秀実

× 重川, 秀実

WEKO 49
e-Rad 20134489
筑波大学研究者総覧 0000000688

重川, 秀実

Search repository
抄録
内容記述 Understanding and extracting the full functions of single-molecule characteristics are key factors in the development of future device technologies, as well as in basic research on molecular electronics. Here we report a new methodology for realizing a three-dimensional (3D) dynamic probe of single-molecule conductance, which enables the elaborate 3D analysis of the conformational effect on molecular electronics, by the formation of a Si/single molecule/Si structure using scanning tunnelling microscopy (STM). The formation of robust covalent bonds between a molecule and Si electrodes, together with STM-related techniques, enables the stable and repeated control of the conformational modulation of the molecule. By 3D imaging of the conformational effect on a 1,4-diethynylbenzene molecule, a binary change in conductance with hysteresis is observed for the first time, which is considered to originate from a mechanically activated conformational change.
書誌情報 Nature Communications

巻 6, p. 8465, 発行日 2015-10
ISSN
収録物識別子 2041-1723
書誌レコードID
収録物識別子 AA12645905
PubMed番号
関連識別子
関連識別子 26439280
DOI
関連識別子
関連識別子 10.1038/ncomms9465
権利
権利情報 © 2015 Macmillan Publishers Limited. All rights reserved. This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
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出版者 Nature Publishing Group
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