烷烃
化学
反应性(心理学)
光化学
过渡金属
键裂
金属
价(化学)
价键理论
化学物理
结晶学
催化作用
分子轨道
分子
有机化学
病理
替代医学
医学
作者
Raphael M. Jay,Ambar Banerjee,Torsten Leitner,Ru‐Pan Wang,Jessica Harich,Robert Stefanuik,Hampus Wikmark,Michael R. Coates,Emma V. Beale,Victoria Kabanova,Abdullah Kahraman,Anna Wach,D. Ozerov,Christopher Arrell,Philip J. M. Johnson,Camelia N. Borca,Claudio Cirelli,Camila Bacellar,Christopher J. Milne,Nils Huse
标识
DOI:10.26434/chemrxiv-2023-64n4r
摘要
The reactivity towards C-H bond activation of alkanes with transition metals is determined by the ability of the metal to donate and withdraw electron density in due proportion. Manipulating this reactivity in a controlled way is difficult, because the hypothesized metal-alkane charge-transfer interactions are challenging to access experimentally. Using time-resolved X-ray spectroscopy, we track the charge-transfer interactions in a C-H activating Rh complex and reveal changes in oxidation state as well as valence-orbital energies and character from femtosecond Rh-alkane bond formation to nanosecond C-H bond cleavage. Our X-ray spectroscopic signatures reflect how alkane-to- metal donation determines metal-alkane bond stability and how metal-to-alkane back-donation facilitates C-H bond cleavage by oxidative addition. The ability to dissect charge-transfer interactions on an orbital-level provides new opportunities for manipulating reactivity for C-H activation with transition metals.
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