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Doping Effects in Cluster-Mediated Bond Activation

机译:簇介导的键激活中的掺杂效应

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Gas-phase investigations of judiciously doped oxide clusters permit to address fundamental challenges related to, for example, the low-temperature oxidation of CO or the selective conversion of hydrocarbons. Modifying the size and composition of a free cluster in a controlled way enables the modification of local charge effects and of spin states, and spectroscopic studies in combination with computational work help to identify the active site of a catalyst and to unravel mechanistic details. Also, the interplay of the support material with the reactive part of a composite catalyst cluster can be addressed. Examples will be presented demonstrating how and why the gas-phase reactivities of heteronuclear clusters, in comparison with their homo-nuclear counterparts, toward small, generally rather inert molecules can be increased, decreased, or not significantly affected.
机译:明智地掺杂氧化物团簇的气相研究可以解决与例如CO的低温氧化或碳氢化合物的选择性转化有关的基本挑战。以受控方式修改自由簇的大小和组成,可以修改局部电荷效应和自旋态,光谱研究与计算工作相结合有助于确定催化剂的活性位点并揭示机理细节。同样,可以解决载体材料与复合催化剂簇的反应性部分的相互作用。将提供示例,说明与同核对应物相比,异核簇对小的,通常相当惰性的分子的气相反应性如何以及为什么会增加,减少或没有受到显着影响。

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