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Activation of Propane C-H and C-C Bonds by Gas-Phase Pt Atom: A Theoretical Study

机译:气相Pt原子活化丙烷C-H和C-C键的理论研究

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摘要

The reaction mechanism of the gas-phase Pt atom with C3H8 has been systematically investigated on the singlet and triplet potential energy surfaces at CCSD(T)//BPW91/6-311++G(d, p), Lanl2dz level. Pt atom prefers the attack of primary over secondary C-H bonds in propane. For the Pt + C3H8 reaction, the major and minor reaction channels lead to PtC3H6 + H2 and PtCH2 + C2H6, respectively, whereas the possibility to form products PtC2H4 + CH4 is so small that it can be neglected. The minimal energy reaction pathway for the formation of PtC3H6 + H2, involving one spin inversion, prefers to start at the triplet state and afterward proceed along the singlet state. The optimal C-C bond cleavages are assigned to C-H bond activation as the first step, followed by cleavage of a C-C bond. The C-H insertion intermediates are kinetically favored over the C-C insertion intermediates. From C-C to C-H oxidative insertion, the lowering of activation barrier is mainly caused by the more stabilizing transition state interaction ΔEint, which is the actual interaction energy between the deformed reactants in the transition state.
机译:在CCSD(T)// BPW91 / 6-311 ++ G(d,p),Lanl2dz能级上,研究了单重态和三重态势能面上气相Pt原子与C3H8的反应机理。 Pt原子更喜欢在丙烷中对伯C-H键的攻击而不是对C-H键的攻击。对于Pt + C3H8反应,主要和次要反应通道分别导致PtC3H6 + H2和PtCH2 + C2H6,而形成产物PtC2H4 + CH4的可能性很小,可以忽略不计。 PtC3H6 + H2形成的最小能量反应途径(涉及一个自旋反转),倾向于从三重态开始,然后沿单重态进行。第一步,将最佳的C-C键裂解指定为C-H键激活,然后进行C-C键裂解。 C-H插入中间体在动力学上优于C-C插入中间体。从CC到CH的氧化插入,活化能垒的降低主要是由于过渡态相互作用ΔE int 更加稳定,这是变形反应物之间的实际相互作用能。在过渡状态。

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