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Rhenium Nanochemistry for Catalyst Preparation

机译:hen纳米化学用于催化剂制备

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The review presents synthetic approaches to modern rhenium-based catalysts. Creation of an active center is considered as a process of obtaining a nanoparticle or a molecule, immobilized within a matrix of the substrate. Selective chemical routes to preparation of particles of rhenium alloys, rhenium oxides and the molecules of alkyltrioxorhenium, and their insertion into porous structure of zeolites, ordered mesoporous MCM matrices, anodic mesoporous alumina, and porous transition metal oxides are considered. Structure-property relationships are traced for these catalysts in relation to such processes as alkylation and isomerization, olefin metathesis, selective oxidation of olefins, methanol to formaldehyde conversion, etc.
机译:该评论介绍了现代rh基催化剂的合成方法。活性中心的产生被认为是获得固定在基质基质内的纳米颗粒或分子的过程。考虑了制备chemical合金、,氧化物和烷基三氧or鎓分子的选择性化学途径,以及将其插入沸石,有序中孔MCM基质,阳极中孔氧化铝和多孔过渡金属氧化物的多孔结构中的方法。这些催化剂与烷基化和异构化,烯烃复分解,烯烃的选择性氧化,甲醇到甲醛的转化等过程有关,具有结构-性质关系。

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