Synthesis and chiral recognition of helical polymers

被引:22
|
作者
Okamoto, Y
Nakano, T
Habaue, S
Shiohara, K
Maeda, K
机构
[1] Department of Applied Chemistry, School of Engineering, Nagoya University, Chikusa-ku 464-01, Furo-cho
关键词
D O I
10.1080/10601329708010307
中图分类号
O63 [高分子化学(高聚物)];
学科分类号
070305 ; 080501 ; 081704 ;
摘要
Asymmetric syntheses of optically active polymethacrylate, polyacrylate, polyacrylamide, and polyisocyanate with helical conformation and their chiral recognition abilities are described. 1-Phenyldibenzosuberyl methacrylate (PDBSMA) gave a purely one-handed-helical, optically active polymer([alpha](365) + 1670 similar to + 1780 degrees) with almost perfectly isotactic structure by anionic polymerization using optically active initiators. Radical polymerizations of PDBSMA using chiral initiators, chain transfer agents, and additives also afforded optically active polymers with a prevailing one-handed helicity. Triphenylmethyl acrylate yielded an optically active, helical polymer ([alpha](365)+ 102 degrees) having a dyad isotacticity of 70% using an optically active anionic initiator. Although the polyacrylate demonstrated chiral recognition ability as a chiral stationary phase for HPLC, the ability was low mainly because of the low degree of one-handedness. N-(3 -Chlorophenyl)-N-phenylacrylamide gave an optically active, helical polymer ([alpha](365) - 343 degrees) in the asymmetric anionic polymerization; the polymer had a dyad tacticity of 77%. Optically active polyisocyanates with a predominantly one-handed helical conformation were prepared in homo and co-polymerization of optically active phenyl isocyanate derivative. These polyisocyanates showed the ability to discriminate enantiomers in solution.
引用
收藏
页码:1771 / 1783
页数:13
相关论文
共 50 条
  • [21] Synthesis and chiral recognition of optically active hydrogels containing helical polymer chains
    Du, Xiaoying
    Liu, Jinbao
    Deng, Jianping
    Yang, Wantai
    POLYMER CHEMISTRY, 2010, 1 (07) : 1030 - 1038
  • [22] Synthesis, inversion, and chiral discrimination of helical polymers based on the host-guest complexation
    Sakai, Ryosuke
    Otsuka, Issei
    Kakuchi, Ryohei
    Satoh, Toshifumi
    Kakuchi, Toyoji
    KOBUNSHI RONBUNSHU, 2006, 63 (05) : 315 - 324
  • [23] Chiral Nanostructures from Artificial Helical Polymers: Recent Advances in Synthesis, Regulation, and Functions
    Qiu, Yuan
    Wei, Xilong
    Lam, Jacky W. Y.
    Qiu, Zijie
    Tang, Ben Zhong
    ACS Nano, 2025, 19 (01) : 229 - 280
  • [24] Chiral recognition of helical metal complexes by cyclodextrins
    Hasegawa, H
    Kano, K
    JOURNAL OF INORGANIC BIOCHEMISTRY, 2001, 86 (01) : 252 - 252
  • [25] Selective synthesis of helical polymers
    Wang, Qian
    Liu, Yu-Qi
    Gao, Run-Tan
    Wu, Zong-Quan
    JOURNAL OF POLYMER SCIENCE, 2023, 61 (03) : 189 - 196
  • [26] Imprinted photonic polymers for chiral recognition
    Hu, Xiaobin
    An, Qi
    Li, Guangtao
    Tao, Shengyang
    Liu, Ban
    ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2006, 45 (48) : 8145 - 8148
  • [27] Chiral recognition of α-amino esters on the chiral helical surface of zinc bilinone
    Yagi, S
    Sadachi, H
    Kashiwagi, Y
    Takagishi, T
    Mizutani, T
    Kitagawa, S
    Ogoshi, H
    CHEMISTRY LETTERS, 2000, (09) : 1054 - 1055
  • [28] Synthesis of Molecularly Imprinted Polymers for Chiral (S)-Ibuprofen and Their Molecular Recognition Mechanism
    Huangfu, Fengyun
    Wang, Bing
    Sun, Yan
    POLYMER-KOREA, 2013, 37 (03) : 288 - 293
  • [29] Competition between chiral solvents and chiral monomers in the helical bias of supramolecular polymers
    Sleczkowski, Marcin L.
    Mabesoone, Mathijs F. J.
    Sleczkowski, Piotr
    Palmans, Anja R. A.
    Meijer, E. W.
    NATURE CHEMISTRY, 2021, 13 (02) : 200 - 207
  • [30] Competition between chiral solvents and chiral monomers in the helical bias of supramolecular polymers
    Marcin L. Ślęczkowski
    Mathijs F. J. Mabesoone
    Piotr Ślęczkowski
    Anja R. A. Palmans
    E. W. Meijer
    Nature Chemistry, 2021, 13 : 200 - 207