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首页> 外文期刊>Journal of the American Chemical Society >Probing Hydrogen Atom Transfer at a Phosphorus(Ⅴ) Oxide Bond Using a 'Bulky Hydrogen Atom' Surrogate: Analogies to PCET
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Probing Hydrogen Atom Transfer at a Phosphorus(Ⅴ) Oxide Bond Using a 'Bulky Hydrogen Atom' Surrogate: Analogies to PCET

机译:使用“大体积氢原子”替代物探测磷(Ⅴ)氧化键处的氢原子转移:类似于PCET

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Recent computational studies suggest that the phosphate support in the commercial vanadium phosphate oxide (VPO) catalyst may play a critical role in initiating butane C-H bond activation through a mechanism termed reduction-coupled oxo activation (ROA) similar to proton-coupled electron transfer (PCET); however, no experimental evidence exists to support this mechanism. Herein, we present molecular model compounds, (Ph2N)(3)V=N-P(O)Ar-2 (Ar = C6F5 (2a), Ph (2b)), which are reactive to both weak H atom donors and a Me,Si* (a "bulky hydrogen atom" surrogate) donor, 1,4-bis(trimethylsilyl)pyrazine. While the former reaction led to product decomposition, the latter resulted in the isolation of the reduced, silylated complexes (Ph2N)(3)V-N=P(OSiMe3)Ar-2 (3a/b). Detailed analyses of possible reaction pathways, involving the isolation and full characterization of potential stepwise square-scheme intermediates, as well as the determination of minimum experimentally and computationally derived thermochemical values, are described. We find that stepwise electron transfer (ET) + silylium transfer (ST) or concerted EST mechanisms are most likely. This study provides the first experimental evidence supporting a ROA mechanism and may inform future studies in homogeneous or heterogeneous C-H activation chemistry, as well as open up a possible new avenue for main group/transition metal cooperative redox reactivity.
机译:近期的计算研究表明,商用磷酸钒氧化物(VPO)催化剂中的磷酸盐载体可能通过类似于质子偶联电子转移(PCET)的还原偶联羰基活化(ROA)的机制在引发丁烷CH键活化中起关键作用。 );但是,没有实验证据支持这种机制。在这里,我们介绍了分子模型化合物(Ph2N)(3)V = NP(O)Ar-2(Ar = C6F5(2a),Ph(2b)),它们对弱H原子供体和Me均具有反应性, Si *(“大氢原子”替代物)供体1,4-双(三甲基甲硅烷基)吡嗪。前者反应导致产物分解,而后者导致还原的甲硅烷基化配合物(Ph2N)(3)V-N = P(OSiMe3)Ar-2(3a / b)分离。描述了可能的反应途径的详细分析,包括潜在的逐步方方案中间体的分离和全面表征,以及确定最小的实验和计算得出的热化学值。我们发现逐步电子转移(ET)+硅转移(ST)或协调的EST机制是最可能的。这项研究提供了支持ROA机制的首个实验证据,并可能为将来在均相或异相C-H活化化学中的研究提供参考,并为主要基团/过渡金属的协同氧化还原反应性开辟了新的途径。

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