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Polysiloxanes in Catalysis and Catalyst Preparation: Opportunities for Control of Catalytic Processes

机译:催化和催化剂制备中的聚硅氧烷:控制催化过程的机会

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摘要

Because of the relative ease to modify, func-tionalize, and synthesize polysiloxanes, these compounds offer interesting possibilities to greatly influence the properties of a catalytic system. These potentials are illustrated with three catalytic systems. In the first system, siloxane nanocages are shown to exhibit confinement effects by strongly modifying the protonation affinity of internal amine groups and by changing the activity and product selectivity in a reaction catalyzed by these groups. In the second example, the length of the siloxane backbone of a bis(pyridyl)siloxane ligand is shown to be critical both in stabilizing a Pd acetate complex catalyst in selective oxidation of benzyl alcohol, and in determining the dependence of the reaction rate on the pyridyl concentration in the reaction mixture. In the third example, polysiloxanes are shown to be useful in the preparation of a supported Pd catalyst in which the metal loading and particle size can be independently controlled.
机译:由于聚硅氧烷的改性,功能化和合成相对容易,因此这些化合物提供了有趣的可能性,可极大地影响催化体系的性能。用三个催化系统说明了这些潜力。在第一种体系中,通过强烈修饰内部胺基的质子亲和力并通过改变由这些基团催化的反应中的活性和产物选择性,硅氧烷纳米笼显示出局限作用。在第二个实施例中,双(吡啶基)硅氧烷配体的硅氧烷主链的长度在稳定苄基醇的选择性氧化过程中稳定乙酸钯络合物催化剂以及确定反应速率对催化剂的依赖性方面都至关重要。反应混合物中吡啶基的浓度。在第三实施例中,显示出聚硅氧烷可用于制备负载的Pd催化剂,其中金属载量和粒径可独立控制。

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