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首页> 外文期刊>Science Advances >Intermetallic nickel silicide nanocatalyst—A non-noble metal–based general hydrogenation catalyst
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Intermetallic nickel silicide nanocatalyst—A non-noble metal–based general hydrogenation catalyst

机译:金属间化合物硅化镍纳米催化剂-一种非贵金属基通用加氢催化剂

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摘要

Hydrogenation reactions are essential processes in the chemical industry, giving access to a variety of valuable compounds including fine chemicals, agrochemicals, and pharmachemicals. On an industrial scale, hydrogenations are typically performed with precious metal catalysts or with base metal catalysts, such as Raney nickel, which requires special handling due to its pyrophoric nature. We report a stable and highly active intermetallic nickel silicide catalyst that can be used for hydrogenations of a wide range of unsaturated compounds. The catalyst is prepared via a straightforward procedure using SiO2 as the silicon atom source. The process involves thermal reduction of Si–O bonds in the presence of Ni nanoparticles at temperatures below 1000°C. The presence of silicon as a secondary component in the nickel metal lattice plays the key role in its properties and is of crucial importance for improved catalytic activity. This novel catalyst allows for efficient reduction of nitroarenes, carbonyls, nitriles, N-containing heterocycles, and unsaturated carbon–carbon bonds. Moreover, the reported catalyst can be used for oxidation reactions in the presence of molecular oxygen and is capable of promoting acceptorless dehydrogenation of unsaturated N-containing heterocycles, opening avenues for H2 storage in organic compounds. The generality of the nickel silicide catalyst is demonstrated in the hydrogenation of over a hundred of structurally diverse unsaturated compounds. The wide application scope and high catalytic activity of this novel catalyst make it a nice alternative to known general hydrogenation catalysts, such as Raney nickel and noble metal–based catalysts.
机译:氢化反应是化学工业中必不可少的过程,可以使用多种有价值的化合物,包括精细化学品,农用化学品和药物。在工业规模上,氢化通常用贵金属催化剂或贱金属催化剂如阮内镍进行,由于其发火性质,需要特殊处理。我们报道了一种稳定且高活性的金属间金属硅化镍催化剂,可用于氢化各种不饱和化合物。通过简单的步骤,使用SiO 2 作为硅原子源制备催化剂。该过程涉及在温度低于1000°C的镍纳米粒子存在下热还原Si-O键。在镍金属晶格中硅作为次要成分的存在对其性能起关键作用,对于提高催化活性至关重要。这种新型催化剂可以有效还原硝基芳烃,羰基,腈,含氮杂环和不饱和碳-碳键。此外,所报道的催化剂可在分子氧存在下用于氧化反应,并能够促进不饱和含氮杂环的无受体脱氢,为有机化合物中H 2 的储存开辟了途径。在一百多种结构多样的不饱和化合物的氢化中证明了硅化镍催化剂的通用性。这种新型催化剂的广泛应用范围和高催化活性使其成为已知的常规氢化催化剂(如阮内镍和贵金属基催化剂)的理想替代品。

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