Department of Chemical and Biomolecular Engineering, University of Illinois at Urbana-Champaign , Urbana, Illinois 61801, United States.
Department of Chemistry, University of Illinois at Urbana-Champaign , Urbana, Illinois 61801, United States.
J Am Chem Soc. 2017 Oct 4;139(39):13644-13647. doi: 10.1021/jacs.7b08010. Epub 2017 Sep 25.
The rate of living ring-opening metathesis polymerization (ROMP) of N-hexyl-exo-norbornene-5,6-dicarboximide initiated by Grubbs third-generation catalyst precursors [(HIMes)(py)(Cl)Ru═CHPh] and [(HIMes)(3-Br-py)(Cl)Ru═CHPh] is measured to be independent of catalyst concentration. This result led to the development of a rate law describing living ROMP initiated by a Grubbs third-generation catalyst that includes an inverse first-order dependency in pyridine. Additionally, it is demonstrated that one of the two pyridines coordinated to the solid catalyst is fully dissociated in solution. The monopyridine adduct formation is confirmed in solution by H DOSY (diffusion-ordered NMR spectroscopy), and a Van't Hoff analysis of the equilibrium between mono- and dipyridine adducts (extrapolated K ∼ 0.5 at 25 °C). Finally, the difference in polymerization rates between two catalyst precursors is demonstrated to correspond to the difference in coordination strength between the two pyridines, suggesting that the catalytic species involved in the polymerization's rate-determining step is not coordinated to pyridine.
引发剂 Grubbs 第三代催化剂前体[(HIMes)(py)(Cl)Ru═CHPh]和[(HIMes)(3-Br-py)(Cl)Ru═CHPh]引发的 N-己基-外-降冰片烯-5,6-二羧酸亚胺的活性开环易位聚合(ROMP)速率与催化剂浓度无关。这一结果导致了一个描述由 Grubbs 第三代催化剂引发的活性 ROMP 的速率定律的发展,该定律包括吡啶的逆一级依赖性。此外,证明了与固体催化剂配位的两个吡啶中的一个在溶液中完全解离。通过 H DOSY(扩散有序 NMR 光谱)在溶液中证实了单吡啶加合物的形成,并对单吡啶和二吡啶加合物之间的平衡进行了范特霍夫分析(在 25°C 时外推 K ∼ 0.5)。最后,证明两种催化剂前体之间聚合速率的差异对应于两种吡啶之间配位强度的差异,这表明聚合反应速率决定步骤中涉及的催化物种不与吡啶配位。