Sainna Mala A, de Visser Sam P
Manchester Institute of Biotechnology and School of Chemical Engineering and Analytical Science, the University of Manchester, 131 Princess Street, Manchester M1 7DN, UK.
Int J Mol Sci. 2015 Sep 28;16(10):23369-81. doi: 10.3390/ijms161023369.
Industrial Fischer-Tropsch processes involve the synthesis of hydrocarbons usually on metal surface catalysts. On the other hand, very few homogeneous catalysts are known to perform a Fischer-Tropsch style of reaction. In recent work, we established the catalytic properties of a diruthenium-platinum carbene complex, (CpRu)₂(μ²-H) (μ²-NHCH₃)(μ³-C)PtCH₃(P(CH₃)₃)₂n⁺ with n=0, 2 and Cp=η⁵-C₅(CH₃)₅, and showed it to react efficiently by initial hydrogen atom transfer followed by methyl transfer to form an alkyl chain on the Ru-center. In particular, the catalytic efficiency was shown to increase after the addition of two CO molecules. As such, this system could be viewed as a potential homogeneous Fischer-Tropsch catalyst. Herein, we have engineered the catalytic center of the catalyst and investigated the reactivity of trimetal carbene complexes of the same type using iron, ruthenium and osmium at the central metal scaffold. The work shows that the reactivity should increase from diosmium to diruthenium to diiron; however, a non-linear trend is observed due to multiple factors contributing to the individual barrier heights. We identified all individual components of these reaction steps in detail and established the difference in reactivity of the various complexes.
工业费托合成过程通常涉及在金属表面催化剂上合成碳氢化合物。另一方面,已知很少有均相催化剂能进行费托式反应。在最近的工作中,我们确定了一种二钌 - 铂卡宾配合物(CpRu)₂(μ² - H)(μ² - NHCH₃)(μ³ - C)PtCH₃(P(CH₃)₃)₂n⁺(n = 0, 2且Cp = η⁵ - C₅(CH₃)₅)的催化性能,并表明它通过初始氢原子转移,随后甲基转移,在Ru中心形成烷基链,从而高效反应。特别地,添加两个CO分子后,催化效率有所提高。因此,该体系可被视为一种潜在的均相费托催化剂。在此,我们对催化剂的催化中心进行了设计,并研究了在中心金属骨架上使用铁、钌和锇的同类型三金属卡宾配合物的反应活性。研究表明,反应活性应从二锇到二钌再到二铁逐渐增加;然而,由于多种因素影响各个能垒高度,观察到的是一种非线性趋势。我们详细确定了这些反应步骤的所有单独组分,并确定了各种配合物反应活性的差异。