| Literature DB >> 32256849 |
Atsunori Mori1,2, Keisuke Fujita1, Chihiro Kubota1, Toyoko Suzuki1, Kentaro Okano1, Takuya Matsumoto1, Takashi Nishino1, Masaki Horie3.
Abstract
Differently substituted thiophene-thiophene-alternating copolymers were formally synthesized employing a halo-bithiophene as a monomer. Nickel-catalyzed polymerization of bithiophene with substituents at the 3-position, including alkyl-, fluoroalkyl-, or oligosiloxane-containing groups, afforded the corresponding copolymers in good to excellent yield. The solubility test in organic solvents was performed to reveal that several copolymers showed a superior solubility. X-ray diffraction analysis of the thin film of the alternating copolymers composed of methyl and branched oligosiloxane substituents was also performed, and the results suggested the formation of a dual-layered film structure.Entities:
Keywords: alternating copolymer; nickel(II) catalyst; oligosiloxane; regioregular polythiophene; solubility
Year: 2020 PMID: 32256849 PMCID: PMC7082695 DOI: 10.3762/bjoc.16.31
Source DB: PubMed Journal: Beilstein J Org Chem ISSN: 1860-5397 Impact factor: 2.883
Scheme 1Cross-coupling polymerization of thiophene.
Scheme 2Polymerization of bithiophene.
Scheme 3Preparation of chlorobithiophenes.
Scheme 4Polymerization of chlorobithiophenes.
Figure 1Solubility tests of alternating copolymer 6 (1 mg of material dissolved in 1 mL of the solvent).
Figure 2XRD measurement and prediction of the bilayer lamellar structure of polymer 6c. a) XRD analysis. b) Suggested bilayer lamellar structure. c) Side chain length.