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Selective C-H Activation at a Molecular Rhodium Sigma-Alkane Complex by Solid/Gas Single-Crystal to Single-Crystal H/D Exchange

机译:固/气单晶至单晶H / D交换在分子铑Sigma-Alkane配合物中的选择性C-H活化

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摘要

The controlled catalytic functionalization of alkanes via the activation of C-H bonds is a significant challenge. Although C-H activation by transition metal catalysts is often suggested to operate via intermediate σ-alkane complexes, such transient species are difficult to observe due to their instability in solution. This instability may be controlled by use of solid/gas synthesis techniques that enable the isolation of single-crystals of well-defined σ-alkane complexes. Here we show that using this unique platform, selective alkane C-H activation occurs, as probed by H/D exchange using D2, and that five different isotopomers/isotopologues of the σ-alkane complex result, as characterized by single-crystal neutron diffraction studies for three examples. Low-energy fluxional processes associated with the σ-alkane ligand are identified using variable-temperature X-ray diffraction, solid-state NMR spectroscopy and periodic DFT calculations. These observations connect σ-alkane complexes with their C-H activated products, and demonstrate that alkane-ligand mobility, and selective C-H activation, are possible when these processes occur in the constrained environment of the solid-state.
机译:通过C-H键的活化来控制烷烃的催化功能是一项重大挑战。尽管通常建议通过过渡金属催化剂进行C-H活化是通过中间σ-烷烃配合物进行的,但由于它们在溶液中的不稳定性,因此很难观察到这种瞬态物质。这种不稳定性可以通过使用固体/气体合成技术来控制,该技术能够分离出定义明确的σ-烷烃络合物的单晶。在这里,我们证明,使用这种独特的平台,通过使用D2进行H / D交换探测到了选择性烷烃CH的活化,并且通过对单晶中子衍射研究的结果,发现了σ-烷烃络合物的五个不同的同位素异构体/同位素异构体。三个例子。使用变温X射线衍射,固态NMR光谱和定期DFT计算,可以确定与σ-烷烃配体相关的低能通量过程。这些观察结果将σ-烷烃络合物与其C-H活化产物连接起来,并证明了当这些过程在固态受限的环境中发生时,烷烃-配体迁移率和选择性C-H活化作用是可能的。

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