Search Results - "Kawano, Koki"

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  1. 1

    Predicting behavior through dynamic modes in resting-state fMRI data by Ikeda, Shigeyuki, Kawano, Koki, Watanabe, Soichi, Yamashita, Okito, Kawahara, Yoshinobu

    Published in NeuroImage (Orlando, Fla.) (15-02-2022)
    “…•Dynamic mode decomposition (DMD) is used to extract dynamic modes from resting fMRI.•Dynamic modes predict individual behavioral differences.•DMD yields…”
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    Journal Article
  2. 2

    An Ethynylene‐Bridged Pentacene Dimer: Two‐Step Synthesis and Charge‐Transport Properties by Kawano, Koki, Hayashi, Hironobu, Yoshimoto, Shinya, Aratani, Naoki, Suzuki, Mitsuharu, Yoshinobu, Jun, Yamada, Hiroko

    Published in Chemistry : a European journal (09-10-2018)
    “…A rigid and planar ethynylene‐bridged pentacene dimer (PenD) was synthesized from pentacenequinone in two steps, skipping the conventional stepwise approach. A…”
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    Journal Article
  3. 3

    Topological Control of Columnar Stacking Made of Liquid‐Crystalline Thiophene‐Fused Metallonaphthalocyanines by Suzuki, Hiroyuki, Kawano, Koki, Ohta, Kazuchika, Shimizu, Yo, Kobayashi, Nagao, Kimura, Mutsumi

    Published in ChemistryOpen (Weinheim) (01-04-2016)
    “…The spontaneous organization of two‐dimensional polyaromatic molecules into well‐defined nanostructures through noncovalent interactions is important in the…”
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    Journal Article
  4. 4

    Practical Synthesis of Chiral Emopamil Left Hand as a Bioactive Motif by Kimura, Teiji, Yamamoto, Noboru, Suzuki, Yuichi, Kawano, Koki, Norimine, Yoshihiko, Ito, Koichi, Nagato, Satoshi, Iimura, Yoichi, Yonaga, Masahiro

    Published in Journal of organic chemistry (23-08-2002)
    “…An asymmetric synthesis of (2S)-2-(2-isopropyl)-5-hydroxy-2-phenylpentanenitrile (emopamil left hand, 2) has been completed by use of the MAD (methyl aluminum…”
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    Journal Article
  5. 5

    Fast computation of thermal capacity and voltage TAC by means of homotopy functions by Zoka, Yoshifumi, Yorino, Naoto, Kawano, Koki, Suenari, Hiroyasu

    Published in Electronics and communications in Japan (01-03-2009)
    “…This paper proposes a fast computation method for Available Transfer Capability (ATC) with respect to thermal and voltage magnitude limits. In the paper, ATC…”
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    Particle Timing Control and Alignment in Microchannel Flow by Applying Periodic Force Control Using Dielectrophoretic Force by Tatsumi, Kazuya, Kawano, Koki, Shintani, Hiromichi, Nakabe, Kazuyoshi

    Published in Analytical chemistry (Washington) (21-05-2019)
    “…In this study, a technique for particle streamwise timing, spacing and velocity control (alignment) in microchannel flow by controlling the forces exerted on…”
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  8. 8

    Dinaphthotetrathiafulvalene Bisimides: A New Member of the Family of π‐Extended TTF Stable p‐Type Semiconductors by Yamashita, Masataka, Kawano, Koki, Matsumoto, Akinobu, Aratani, Naoki, Hayashi, Hironobu, Suzuki, Mitsuharu, Zhang, Lei, Briseno, Alejandro L., Yamada, Hiroko

    Published in Chemistry : a European journal (26-10-2017)
    “…Air‐stable organic semiconductors based on tetrathiafuluvalene (TTF) were developed by synthesising a series of dinaphthotetrathiafulvalene bisimides…”
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    Journal Article
  9. 9

    Dinaphthotetrathiafulvalene Bisimides: A New Member of the Family of π‐Extended TTF Stable p‐Type Semiconductors by Yamashita, Masataka, Kawano, Koki, Matsumoto, Akinobu, Aratani, Naoki, Hayashi, Hironobu, Suzuki, Mitsuharu, Zhang, Lei, Briseno, Alejandro L., Yamada, Hiroko

    Published in Chemistry : a European journal (26-10-2017)
    “…Invited for the cover of this issue is the group of Hiroko Yamada at Nara Institute of Science and Technology. The image depicts the structure of…”
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    Journal Article
  10. 10

    Dinaphthotetrathiafulvalene Bisimides: A New Member of the Family of [pi]-Extended TTF Stable p-Type Semiconductors by Yamashita, Masataka, Kawano, Koki, Matsumoto, Akinobu, Aratani, Naoki, Hayashi, Hironobu, Suzuki, Mitsuharu, Zhang, Lei, Briseno, Alejandro L, Yamada, Hiroko

    Published in Chemistry : a European journal (26-10-2017)
    “…Air-stable organic semiconductors based on tetrathiafuluvalene (TTF) were developed by synthesising a series of dinaphthotetrathiafulvalene bisimides…”
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    Journal Article
  11. 11

    Front Cover: Dinaphthotetrathiafulvalene Bisimides: A New Member of the Family of π‐Extended TTF Stable p‐Type Semiconductors (Chem. Eur. J. 60/2017) by Yamashita, Masataka, Kawano, Koki, Matsumoto, Akinobu, Aratani, Naoki, Hayashi, Hironobu, Suzuki, Mitsuharu, Zhang, Lei, Briseno, Alejandro L., Yamada, Hiroko

    Published in Chemistry : a European journal (26-10-2017)
    “…A new member of the π‐expanded TTF family, dinaphthotetrathiafulvalene bisimide, is proven to be an air‐stable p‐type semiconductor. The hole‐carrier mobility…”
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    Journal Article
  12. 12

    Front Cover: Dinaphthotetrathiafulvalene Bisimides: A New Member of the Family of [pi]-Extended TTF Stable p-Type Semiconductors by Yamashita, Masataka, Kawano, Koki, Matsumoto, Akinobu, Aratani, Naoki, Hayashi, Hironobu, Suzuki, Mitsuharu, Zhang, Lei, Briseno, Alejandro L, Yamada, Hiroko

    Published in Chemistry : a European journal (26-10-2017)
    “…A new member of the π-expanded TTF family, dinaphthotetrathiafulvalene bisimide, is proven to be an air-stable p-type semiconductor. The hole-carrier mobility…”
    Get full text
    Journal Article
  13. 13

    Dinaphthotetrathiafulvalene Bisimides: A New Member of the Family of [pi]-Extended TTF Stable p-Type Semiconductors by Yamashita, Masataka, Kawano, Koki, Matsumoto, Akinobu, Aratani, Naoki, Hayashi, Hironobu, Suzuki, Mitsuharu, Zhang, Lei, Briseno, Alejandro L, Yamada, Hiroko

    Published in Chemistry : a European journal (26-10-2017)
    “…Invited for the cover of this issue is the group of HirokoYamada at Nara Institute of Science and Technology. The image depicts the structure of…”
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    Journal Article
  14. 14

    Ultimate heat transfer in `wall-bounded' convective turbulence by Kawano, Koki, Motoki, Shingo, Shimizu, Masaki, Kawahara, Genta

    Published 19-04-2020
    “…Direct numerical simulations have been performed for turbulent thermal convection between horizontal no-slip, permeable walls with a distance $H$ and a…”
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