Invention Application
US20120088900A1 PROCESS FOR PREPARING REGIOREGULAR POLY-(3-SUBSTITUTED) THIOPHENES, SELENOPHENES, THIAZOLES AND SELENAZOLES 失效
制备邻苯二酚(3-取代的)噻吩,苯丙烯,噻唑和精油的方法

  • Patent Title: PROCESS FOR PREPARING REGIOREGULAR POLY-(3-SUBSTITUTED) THIOPHENES, SELENOPHENES, THIAZOLES AND SELENAZOLES
  • Patent Title (中): 制备邻苯二酚(3-取代的)噻吩,苯丙烯,噻唑和精油的方法
  • Application No.: US13378069
    Application Date: 2010-06-14
  • Publication No.: US20120088900A1
    Publication Date: 2012-04-12
  • Inventor: Marcel KastlerSilke Annika Koehler
  • Applicant: Marcel KastlerSilke Annika Koehler
  • Applicant Address: US NE Lincoln DE Ludwigshafen
  • Assignee: RIEKE METALS, INC.,BASF SE
  • Current Assignee: RIEKE METALS, INC.,BASF SE
  • Current Assignee Address: US NE Lincoln DE Ludwigshafen
  • Priority: EP09162723.2 20090615
  • International Application: PCT/EP2010/058300 WO 20100614
  • Main IPC: C08G75/00
  • IPC: C08G75/00
PROCESS FOR PREPARING REGIOREGULAR POLY-(3-SUBSTITUTED) THIOPHENES, SELENOPHENES, THIAZOLES AND SELENAZOLES
Abstract:
A process for preparing a regioregular homopolymer or copolymer of 3-substituted thiophene, 3-substituted selenophene, 3-substituted thiazol or 3-substituted selenazol by a) reacting a 3-substituted 2,5-dihalothiophene, 2,5-dihaloselenophene, 2,5-dihalothiazol or 2,5-dihaloselenazol with reactive zinc, magnesium and/or an organomagnesium halide to give an organozinc or organomagnesium intermediate containing one halozinc or one halomagnesium group, b) bringing the organozinc or the organomagnesium intermediate into contact with a Ni(II), Ni(O), Pd(II) or Pd(O) catalyst to initiate the polymerization reaction, and c) polymerizing the organozinc or the organomagnesium intermediate to give a regioregular head-to-tail homopolymer or copolymer of 3-substituted thiophene, 3-substituted selenophene, 3-substituted thiazol or 3-substituted selenazol characterized in that the polymerization reaction is carried out at a temperature rising from a lower temperature T1 to a higher temperature T2 during a time t1, wherein T1 is in the range of from −40 to 5 ° C. and T2 is in the range of from −20 to 40 ° C., wherein T2−T1 is at least 10 ° C. and the average rate of increase (T2−T1)/t1 is in the range of from 0.05 ° C/min to 1 ° C/min.
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