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Catalyst@Metal Hybrids in a One-Pot Multistep Opposing Oxidation and Reduction Reaction Sequence

机译:催化剂@金属杂交物在单盆多中间的氧化和还原反应序列中

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摘要

We report the feasibility of the catalysis of contrasting reactions, oxidation and reduction, in a multistep process that also involves a condensation reaction all performed with hybrids of catalytic organometallic complexes entrapped within metals ([complex]@metal). Two routes were explored for the multistep process. The first route used a combination of an oxidizing Ir complex entrapped in Ag ([Ir]@Ag) and a reducing Rh complex entrapped in Ag ([Rh]@Ag). The second route used a single composite material, namely, [Ir]@Pd, in which [Ir] acted as the oxidizing catalyst, and Pd was the reducing catalyst. Both routes were efficient for the heterogeneous catalytic oxidation and reduction reaction sequence. Towards the goal of a one-pot multistep oxidation and reduction process, a detailed study of the catalytic alcohol oxidation properties of the heterogeneous [Ir]@Ag and [Ir]@Pd was performed. As the arsenal of available hydrogenation catalysts exceeds by far that of oxidations, this part of the study is, we believe, of general interest in itself, as a new alternative to heterogeneous oxidative catalysis.
机译:我们报告了催化反应,氧化和还原的催化的可行性,所述多步还涉及所有用捕获在金属内的催化有机金属配合物的杂交物进行的缩合反应([复合] @ meteral)。为多步骤过程探索了两条路线。第一途径使用掺入Ag([IR] @Ag)中的氧化红外复合物的组合和Ag中捕获的还原​​Rh复合物([Rh] @Ag)。第二途径使用单个复合材料,即[IR] @Pd,其中[IR]作用为氧化催化剂,并且Pd是还原催化剂。两条路线对于异质催化氧化和还原反应序列有效。朝向单盆多缓慢氧化和还​​原过程的目的,进行了非均相[IR] @Ag和[IR] @Pd的催化醇氧化性能的详细研究。由于可用氢化催化剂的阿森纳超过氧化,这部分研究是我们认为本身的一般兴趣,作为异构氧化催化的新替代品。

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