Department of Chemistry, University of Pennsylvania, 231 South 34th Street, Philadelphia, Pennsylvania 19104, USA.
Center for Catalytic Hydrocarbon Functionalizations, Institute for Basic Science (IBS), Daejeon 34141, Republic of Korea.
Nat Chem. 2017 Nov;9(11):1126-1132. doi: 10.1038/nchem.2795. Epub 2017 Jun 26.
Selectively converting linear alkanes to α-olefins under mild conditions is a highly desirable transformation given the abundance of alkanes as well as the use of olefins as building blocks in the chemical community. Until now, this reaction has been primarily the remit of noble-metal catalysts, despite extensive work showing that base-metal alkylidenes can mediate the reaction in a stoichiometric fashion. Here, we show how the presence of a hydrogen acceptor, such as the phosphorus ylide, when combined with the alkylidene complex (PNP)Ti=CHBu(CH) (PNP=N[2-P(CHMe)-4-methylphenyl]), catalyses the dehydrogenation of cycloalkanes to cyclic alkenes, and linear alkanes with chain lengths of C to C to terminal olefins under mild conditions. This Article represents the first example of a homogeneous and selective alkane dehydrogenation reaction using a base-metal titanium catalyst. We also propose a unique mechanism for the transfer dehydrogenation of hydrocarbons to olefins and discuss a complete cycle based on a combined experimental and computational study.
在温和条件下选择性地将线性烷烃转化为α-烯烃是一种非常理想的转化,因为烷烃的丰富度以及烯烃作为化学界的构建块的用途。到目前为止,尽管有大量工作表明,碱金属亚烷基可以以化学计量的方式介导反应,但这种反应主要还是贵金属催化剂的领域。在这里,我们展示了在存在氢受体(如磷叶立德)的情况下,与亚烷基络合物(PNP)Ti=CHBu(CH)(PNP=N[2-P(CHMe)-4-甲基苯基])结合时,如何催化环烷烃脱氢为环状烯烃,以及在温和条件下将链长为 C 至 C 的线性烷烃转化为末端烯烃。本文代表了使用碱金属钛催化剂进行均相和选择性烷烃脱氢反应的第一个实例。我们还提出了一种用于烃向烯烃转移脱氢的独特机制,并基于实验和计算研究讨论了一个完整的循环。