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Efficient Transformation of Polymer Main Chain Catalyzed by Macrocycle Metal Complexes via Pseudorotaxane Intermediate
Authors:Prof?Dr Toshikazu Takata  Prof?Dr Koji Yamamoto  Kazuki Higuchi  Dr Masahiro Ogawa  Ayumi Kawasaki  Shunya Mizuno  Hikaru Iwasaki  Masaki Nagashima  Prof?Dr Yoshihiro Hayashi  Prof?Dr Susumu Kawauchi  Prof?Dr Kazuko Nakazono  Prof?Dr Yasuhito Koyama
Institution:1. School of Materials and Chemical Technology, Tokyo Institute of Technology and JST CREST, 4259 Nagatsuta-cho, Midori-ku, Yokohama, 226-8503 Japan;2. Department of Chemical Science and Engineering, Tokyo Institute of Technology, 2-12-1 Ookayama, Meguro, Tokyo, 152-8552 Japan;3. Department of Pharmaceutical Engineering, Toyama Prefecture University, 5180 Kurokawa, Imizu, Toyama, 939-0398 Japan
Abstract:Post-synthesis modification of polymers streamlines the synthesis of functionalized polymers, but is often incomplete due to the negative polymer effects. Developing efficient polymer reactions in artificial systems thus represents a long-standing objective in the fields of polymer and material science. Here, we show unprecedented macrocycle-metal-complex-catalyzed systems for efficient polymer reaction that result in 100 % transformation of the main chain functional groups presumably via a processive mode reaction. The complete polymer reactions were confirmed in not only intramolecular reaction (hydroamination) but also intermolecular reaction (hydrosilylation) by using Pd- and Pt-macrocycle-catalyzed systems. The most fascinating feature of the both reactions is that higher-molecular-weight polymers reach completion faster. Various studies suggested that the reactions occur in the catalyst cavity via the formation of a supramolecular complex between the macrocycle catalyst and polymer substrate like pseudorotaxane, which should be of characteristic of the efficient polymer reactions progressing in a processive mode.
Keywords:Intermolecular Hydrosilylation  Intramolecular Hydroamination  Macrocycle Metal Complex  Polymer Reaction  Pseudorotaxane Intermediate
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