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首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Synthesis and Catalytic Properties of Porous Metal Silica Materials Templated and Functionalized by Extended Coordination Cages
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Synthesis and Catalytic Properties of Porous Metal Silica Materials Templated and Functionalized by Extended Coordination Cages

机译:多孔金属二氧化硅材料的合成与催化性能延伸和延长协调套件官能化

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摘要

A practically applicable strategy is developed to rationally immobilize easily accessed and highly dispersed redox-active metal oxides into porous metal silica (PMS) materials templated and functionalized by porous metal-ligand moieties. On the basis of this strategy, the highly active porous catalyst PMS-1 is successfully targeted for aerobic oxidation of cyclohexane with conversion up to 14.6%, which is much superior to the current industrially adopted catalysts (less than 4% cyclohexane conversion) that use harsh conditions. This promising approach to explore highly active heterogeneous catalysts for inert C-H bond activation should lead to the further discovery of numerous industrially useful catalysts for the oxidation of inert hydrocarbon raw materials.
机译:开发了一种实际应用的策略,以便在多孔金属二氧化硅(PMS)材料中易于进入和高度分散的氧化还原活性金属氧化物来理性地固定到多孔金属二氧化硅(PMS)材料中通过多孔金属 - 配体部分官能化。 在该策略的基础上,高活性多孔催化剂PMS-1成功地靶向环己烷的有氧氧化,转化率高达14.6%,这远远优于使用的工业上采用的催化剂(少于4%环己烷转化) 艰苦条件。 这种探讨惰性C-H键活化的高活性异质催化剂的有希望的方法应导致对惰性烃原料氧化的许多工业有用催化剂的进一步发现。

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