An application of supramolecular chemistry to molecular conductors
From the viewpoint of "supramolecular chemistry", control of crystal and electronic structures of molecular conductors is described. We have developed a variety of cation and anion radical salts containing supramolecular assemblies. For the formation of the supramolecular structures, two t...
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Published in | Molecular crystals and liquid crystals (Philadelphia, Pa. : 2003) Vol. 380; no. 1; pp. 61 - 68 |
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Main Authors | , , , , , , |
Format | Journal Article |
Language | English |
Published |
Taylor & Francis Group
01.01.2002
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Abstract | From the viewpoint of "supramolecular chemistry", control of crystal and electronic structures of molecular conductors is described. We have developed a variety of cation and anion radical salts containing supramolecular assemblies. For the formation of the supramolecular structures, two types of supramolecular synthons, 1) iodine-based halogen bond -I···X- (X=CN, Cl, Br, S), and 2) tellurium-based secondary bond Te···S, have been examined. These compounds have indicated that supramolecular assemblies provide novel molecular packings and efficiently tune the donor or acceptor arrangement. We also found that the formal charge of conducting molecules can be controlled by the tuning of supramolecular assemblies. |
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AbstractList | From the viewpoint of "supramolecular chemistry", control of crystal and electronic structures of molecular conductors is described. We have developed a variety of cation and anion radical salts containing supramolecular assemblies. For the formation of the supramolecular structures, two types of supramolecular synthons, 1) iodine-based halogen bond -I···X- (X=CN, Cl, Br, S), and 2) tellurium-based secondary bond Te···S, have been examined. These compounds have indicated that supramolecular assemblies provide novel molecular packings and efficiently tune the donor or acceptor arrangement. We also found that the formal charge of conducting molecules can be controlled by the tuning of supramolecular assemblies. |
Author | Sawa, Hiroshi Imakubo, Tatsuro Yamamoto, Hiroshi Maeda, Ryoko Yamaura, Jun-Ichi Fujiwara, Masahiro Kato, Reizo |
Author_xml | – sequence: 1 givenname: Reizo surname: Kato fullname: Kato, Reizo organization: Condensed Molecular Materials Laboratory , RIKEN – sequence: 2 givenname: Tatsuro surname: Imakubo fullname: Imakubo, Tatsuro organization: Condensed Molecular Materials Laboratory , RIKEN – sequence: 3 givenname: Hiroshi surname: Yamamoto fullname: Yamamoto, Hiroshi organization: Condensed Molecular Materials Laboratory , RIKEN – sequence: 4 givenname: Ryoko surname: Maeda fullname: Maeda, Ryoko organization: The Institute for Solid State Physics , The University of Tokyo – sequence: 5 givenname: Masahiro surname: Fujiwara fullname: Fujiwara, Masahiro organization: The Institute for Solid State Physics , The University of Tokyo – sequence: 6 givenname: Jun-Ichi surname: Yamaura fullname: Yamaura, Jun-Ichi organization: The Institute for Solid State Physics , The University of Tokyo – sequence: 7 givenname: Hiroshi surname: Sawa fullname: Sawa, Hiroshi organization: Graduate School of Science and Technology , Chiba University |
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