跳到主要导航 跳到搜索 跳到主要内容

Polycyclotrimerization of diynes: Synthesis and properties of hyperbranched polyphenylenes

  • Kaitian Xu
  • , Han Peng
  • , Qunhui Sun
  • , Yuping Dong
  • , Fouad Salhi
  • , Jingdong Luo
  • , Junwu Chen
  • , Yi Huang
  • , Dezhen Zhang
  • , Zhongde Xu
  • , Ben Zhong Tang*
  • *此作品的通讯作者

科研成果: 期刊稿件文章同行评审

摘要

Diyne polycyclotrimerizations initiated by transition-metal catalysts afforded hyperbranched polyphenylenes, which exhibited low viscosity, outstanding thermal stability, and small optical dispersion. Under optimized reaction conditions, polycyclotrimerizations of 1,8-nonadiyne (1) and 1,9-decadiyne (2) catalyzed by TaCl5-Ph4Sn produced hyperbranched poly(1,2,4-benzenetriyl-1,5-pentanediyl) (3) and poly(1,2,4-benzenetriyl-1,6-hexanediyl) (4),1-5 respectively, in high yields (up to 93%). The polymers were completely soluble and film-forming, and possessed high molecular weights (Mw up to ∼1.4 × 106) but low intrinsic viscosities ([η] down to 0.13 dL/g). Their structures and properties were analyzed and evaluated by IR, UV, NMR, SEC, TGA, DSC, spectrofluorometry, light scattering, and spectroellipsometry. The structural characterizations confirmed the expected hyperbranched molecular architectures of 3 and 4 (comprising of 1,2,4-benzene rings and αω-alkyl spacers) and revealed the regioselective feature of the diyne polycyclotrimerizations. Polymers 3 and 4 underwent glass transitions at 43 and 23°C, respectively, and lost almost no weights when heated to ∼500°C. Polymer 3 emitted UV light upon excitation, whereas 4 was practically nonluminescent. The thin films of 3 were highly transparent (>99.5% transmittance) and displayed an optical dispersion as low as 0.009 in the visible spectral region, much superior to those of the commercially important "organic glasses" such as poly(methyl methacrylate) and polycarbonates.

源语言英语
页(从-至)5821-5834
页数14
期刊Macromolecules
35
15
DOI
出版状态已出版 - 16 7月 2002
已对外发布

指纹

探究 'Polycyclotrimerization of diynes: Synthesis and properties of hyperbranched polyphenylenes' 的科研主题。它们共同构成独一无二的指纹。

引用此