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Living ß-selective cyclopolymerization using Ru dithiolate catalysts.
Jung, Kijung; Ahmed, Tonia S; Lee, Jaeho; Sung, Jong-Chan; Keum, Hyeyun; Grubbs, Robert H; Choi, Tae-Lim.
Afiliación
  • Jung K; Department of Chemistry , Seoul National University , Seoul 08826 , Republic of Korea . Email: tlc@snu.ac.kr.
  • Ahmed TS; The Arnold and Mabel Beckman Laboratory of Chemical Synthesis , Division of Chemistry and Chemical Engineering , California Institute of Technology , Pasadena , California 91125 , USA.
  • Lee J; Department of Chemistry , Seoul National University , Seoul 08826 , Republic of Korea . Email: tlc@snu.ac.kr.
  • Sung JC; Department of Chemistry , Seoul National University , Seoul 08826 , Republic of Korea . Email: tlc@snu.ac.kr.
  • Keum H; Department of Chemistry , Seoul National University , Seoul 08826 , Republic of Korea . Email: tlc@snu.ac.kr.
  • Grubbs RH; The Arnold and Mabel Beckman Laboratory of Chemical Synthesis , Division of Chemistry and Chemical Engineering , California Institute of Technology , Pasadena , California 91125 , USA.
  • Choi TL; Department of Chemistry , Seoul National University , Seoul 08826 , Republic of Korea . Email: tlc@snu.ac.kr.
Chem Sci ; 10(39): 8955-8963, 2019 Oct 21.
Article en En | MEDLINE | ID: mdl-31762976
ABSTRACT
Cyclopolymerization (CP) of 1,6-heptadiyne derivatives is a powerful method for synthesizing conjugated polyenes containing five- or six-membered rings via α- or ß-addition, respectively. Fifteen years of studies on CP have revealed that user-friendly Ru-based catalysts promoted only α-addition; however, we recently achieved ß-selective regiocontrol to produce polyenes containing six-membered-rings, using a dithiolate-chelated Ru-based catalyst. Unfortunately, slow initiation and relatively low catalyst stability inevitably led to uncontrolled polymerization. Nevertheless, this investigation gave us some clues to how successful living polymerization could be achieved. Herein, we report living ß-selective CP by rational engineering of the steric factor on monomer or catalyst structures. As a result, the molecular weight of the conjugated polymers from various monomers could be controlled with narrow dispersities, according to the catalyst loading. A mechanistic investigation by in situ kinetic studies using 1H NMR spectroscopy revealed that with appropriate pyridine additives, imposing a steric demand on either the monomer or the catalyst significantly improved the stability of the propagating carbene as well as the relative rates of initiation over propagation, thereby achieving living polymerization. Furthermore, we successfully prepared diblock and even triblock copolymers with a broad monomer scope.

Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Idioma: En Revista: Chem Sci Año: 2019 Tipo del documento: Article

Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Idioma: En Revista: Chem Sci Año: 2019 Tipo del documento: Article