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Amplified Chirality Transfer to Aromatic Molecules through Non-specific Inclusion by Amorphous,Hyperbranched Poly(fluorenevinylene) Derivatives
Authors:Dr Pengfei Wu  Prof?Dr Adriana Pietropaolo  Dr Mariagrazia Fortino  Dr Masayoshi Bando  Prof?Dr Katsuhiro Maeda  Dr Tatsuya Nishimura  Shuhei Shimoda  Dr Hiroyasu Sato  Prof?Dr Naofumi Naga  Prof?Dr Tamaki Nakano
Institution:1. Institute for Catalysis (ICAT) and Graduate School of Chemical Sciences and Engineering, Hokkaido University, N21W10, Kita-ku, Sapporo, 001-0021 Japan;2. Dipartimento di Scienze della Salute, Università di Catanzaro, Catanzaro, Italy;3. Graduate School of Natural Science and Technology and WPI Nano Life Science Institute (WPI-NanoLSI), Kanazawa University, Kakuma-machi, Kanazawa, 920-1192 Japan;4. Rigaku Corporation, 4-14-4, Sendagaya, Shibuya-Ku, Tokyo, 151-0051 Japan;5. Department of Applied Chemistry, College of Engineering and Graduate School of Engineering and Science, Shibaura Institute of Technology, 3-7-5 Toyosu, Koto-ku, Tokyo, 135-8548 Japan
Abstract:Optically active, hyperbranched, poly(fluorene-2,4,7-triylethene-1,2-diyl) poly(fluorenevinylene)] derivatives bearing a neomenthyl group and a pentyl group at the 9-position of the fluorene backbone at various ratios acted as a chirality donor (host polymers) efficiently included naphthalene, anthracene, pyrene, 9-phenylanthracene, and 9,10-diphenyanthracene as a chirality acceptor (guest molecules) in their interior space in film as well as in solution, with the guest molecules exhibiting intense circular dichroism through chirality transfer with chirality amplification. The efficiency of the chirality transfer was much higher with higher-molar-mass polymers than lower-molar-mass ones as well as with hyperbranched polymers compared to the analogous linear ones. The hyperbranched polymers include the small molecules in their complex structure without any specific interactions at various stoichiometries. The included molecules may have ordered intermolecular arrangement that may be somewhat similar to those of liquid crystals. Naphthalene, anthracene, and pyrene included in the polymer exhibited efficient circularly polarized luminescence, where the chirality was remarkably amplified in excited states, and anthracene exhibited especially high anisotropies in the emission on the order of 10?2.
Keywords:Chirality  Circular Dichroism  Circularly Polarized Light  Polymers  Supramolecular Chemistry
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