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Methane activation by gold-doped titanium oxide cluster anions with closed-shell electronic structures

机译:闭壳电子结构的金掺杂二氧化钛簇阴离子对甲烷的活化

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The reactivity of closed-shell gas phase cluster anions AuTi3O7- and AuTi3O8- with methane under thermal collision conditions was studied by mass spectrometric experiments and quantum chemical calculations. Methane activation was observed with the formation of AuCH3 in both cases, while the formation of formaldehyde was also identified in the reaction system of AuTi3O8-. The cooperative effect of the separated Au+ and O2- ions on the clusters induces the cleavage of the first C-H bond of methane. Further activation of the second C-H bond by a peroxide ion O-2(2-) leads to the formation of formaldehyde. This study shows that closed-shell species on metal oxides can be reactive enough to facilitate thermal H-CH3 bond cleavage and the subsequent conversion.
机译:通过质谱实验和量子化学计算研究了封闭壳气相簇阴离子AuTi3O7-和AuTi3O8-与甲烷在热碰撞条件下的反应性。在两种情况下均观察到甲烷活化与AuCH3的形成,而在AuTi3O8-的反应体系中也发现了甲醛的形成。分离的Au +和O2-离子对簇的协同作用导致甲烷的第一个C-H键裂解。过氧化氢离子O-2(2-)对第二个C-H键的进一步活化导致甲醛的形成。这项研究表明,金属氧化物上的闭壳物种可以具有足够的反应性,以促进H-CH3键的热裂解和随后的转化。

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