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Cascade Aerobic Selective Oxidation over Contiguous Dual-Catalyst Beds in Continuous Flow

机译:连续流动连续双催化剂床的级联有氧选择氧化

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Cascade reactions represent an atom-economical and energy-efficient technology by which to reduce the number of manipulations required for chemical manufacturing. Biocatalytic cascades are ubiquitous in nature; however, controlling the sequence of interactions between reactant, intermediate(s), and active sites remains a challenge for chemocatalysis. Here, we demonstrate an approach to achieve efficient cascades using chemical catalysts through flow chemistry. Close-coupling of Pd/SBA-15 and Pt/SBA-15 heterogeneous catalysts in a dual bed configuration under continuous flow operation affords a high single pass yield of 84% (a 20-fold enhancement over batch operation) and high stability for >14000 turnovers in the cascade oxidation of cinnamyl alcohol to cinnamic acid, despite both catalysts being individually inactive for this reaction. Judicious ordering of Pd (first bed) and Pt (second bed) catalysts is critical to promote cascade oxidation with respect to undesired hydrogenation and hydrogenolysis, the latter favored over the reverse-bed sequence or a single mixed PdPt reactor bed. The intrinsic catalytic performance of each bed is preserved in the optimal dual-bed configuration, enabling quantitative prediction of final product yields for reactants/intermediates whose individual oxidation behavior is established. Continuous processing using contiguous reactor beds enables plug-and-play design of cascades employing "simple" catalysts.
机译:级联反应代表原子经济和节能技术,通过该技术来减少化学制造所需的操作数量。生物催化瀑布本质上是无处不在的;然而,控制反应物,中间体和活性位点之间的相互作用序列仍然是化学催化的挑战。在这里,我们证明了一种方法来实现通过流动化学使用化学催化剂的有效级联。在连续流动运转下双床构型中Pd / SBA-15和Pt / SBA-15非均相催化剂的紧密耦合提供了高度的114%(通过批量运行增强20倍)的高度递增率和高稳定性尽管两种催化剂在该反应中单独无活性,但肉桂醇级联氧化肉桂醇的失误。 Pd(第一床)和Pt(第二床)催化剂的明智顺序对于促进对不希望的氢化和氢化的级联氧化是至关重要的,后者在反向床序列或单个混合PDPT反应器床上偏爱。每个床的固有催化性能在最佳的双床构型中保存,使得能够定量预测最终产物的反应物/中间体的确定性氧化行为的含量。使用连续反应器床的连续加工使采用“简单”催化剂的级联的即插即用设计。

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