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Polymerization by Insertion of Molecular Oxygen into Crystals of 7,7,8,8-Tetrakis(ethoxycarbonyl)quinodimethane

Authors

  • Shinji Nomura,

    1. Department of Chemistry for Materials, Faculty of Engineering, Mie University, 1515 Kamihama-cho, Tsu-shi, Mie 514-8507, Japan, Fax: (+81) 59-231-9410
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  • Takahito Itoh Prof. Dr.,

    1. Department of Chemistry for Materials, Faculty of Engineering, Mie University, 1515 Kamihama-cho, Tsu-shi, Mie 514-8507, Japan, Fax: (+81) 59-231-9410
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  • Masaki Ohtake,

    1. Department of Chemistry for Materials, Faculty of Engineering, Mie University, 1515 Kamihama-cho, Tsu-shi, Mie 514-8507, Japan, Fax: (+81) 59-231-9410
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  • Takahiro Uno Dr.,

    1. Department of Chemistry for Materials, Faculty of Engineering, Mie University, 1515 Kamihama-cho, Tsu-shi, Mie 514-8507, Japan, Fax: (+81) 59-231-9410
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  • Masataka Kubo Dr.,

    1. Department of Chemistry for Materials, Faculty of Engineering, Mie University, 1515 Kamihama-cho, Tsu-shi, Mie 514-8507, Japan, Fax: (+81) 59-231-9410
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  • Atsushi Kajiwara Dr.,

    1. Department of Materials Science, Nara University of Education, Takabatake-cho, Nara 630-8528, Japan
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  • Kazuki Sada Dr.,

    1. Department of Chemistry and Biochemistry, Graduate School of Engineering, Kyushu University, 6-10-1 Hakozaki, Higashi-ku, Fukuoka 812-8581, Japan
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  • Mikiji Miyata Prof. Dr.

    1. Department of Material and Life Science, Graduate School of Engineering, Osaka University and Handai FRC, 2-1 Yamadaoka, Suita, Osaka 565-0871, Japan
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Abstract

original image

Gleiten durch das Gitter: Molekularer Sauerstoff reagiert in einem Radikalmechanismus mit Kristallen des Chinodimethans 1 zu einem hochkristallinen alternierenden Copolymer. Die röntgenographische Untersuchung ergab, dass die einzigartige Anordnung von 1 im Kristall für die Copolymerisation entscheidend ist.

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