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Molecular Assembly Line: Stepwise Hydrogenation of Multifunctional Substrates over Catalyst Mixtures

机译:分子组装线:通过催化剂混合物的多功能底物的逐步氢化

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The synthesis of many chemical products requires multiple steps. To simplify the overall synthesis by combining consecutive reaction steps, the concept of a molecular assembly line promises to yield high reaction rates and selectivities. In this study, mixtures of carbon nanotube (CNT)-supported catalysts were used to demonstrate the potential of this concept on hand of the hydrogenation of nitrobenzene via aniline to cyclohexylamine. Mixtures of Pt/CNT, having a high activity in nitrobenzene hydrogenation, and of Ru/CNT, highly selective for the hydrogenation of aniline to cyclohexylamine, provided high activity at constant high selectivity. Varying the Pt:Ru ratio to 5:95 was found to be the best case scenario, for which the rates of the two consecutive reaction steps are balanced. The use of catalyst mixtures rather than bimetallic catalysts avoids complex phenomena such as phase separation or migration of one of the metals to the surface of the bimetallic particles.
机译:许多化学产品的合成需要多个步骤。 为了通过组合连续的反应步骤来简化整体合成,分子组装线的概念承诺产生高反应速率和选择性。 在该研究中,使用碳纳米管(CNT) - 支持催化剂的混合物来证明通过苯胺至环己胺的硝基苯的氢化的手中的潜力。 Pt / CNT的混合物,在硝基苯氢化和Ru / CNT中具有高活性,高度选择性地用于苯胺至环己胺的氢化,在恒定的高选择性下提供了高活性。 将Pt:Ru比率变为5:95是最佳的情况,其中两个连续的反应步骤的速率平衡。 使用催化剂混合物而不是双金属催化剂避免了复杂的现象,例如金属的相分离或迁移到双金属颗粒的表面。

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