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首页> 外文期刊>Catalysis science & technology >Generation of local redox potential from confined nano-bimetals in porous metal silicate materials for high-performance catalysis
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Generation of local redox potential from confined nano-bimetals in porous metal silicate materials for high-performance catalysis

机译:在多孔金属硅酸盐材料中,从限制的纳米含量中产生局部氧化还原电位,用于高性能催化

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摘要

Partial hydrogenation of polycyclic aromatic hydrocarbons (PAHs) could not only produce highly value-added chemicals but also reduce environmental pollution; however, the partial hydrogenation reaction has to be performed under extreme conditions in the presence of precious metal-based catalysts, because PAHs are a class of inactive reactants. We report herein a porous metal silicate (PMS) material, PMS-16, that consists of Co and Ni bimetal redox-active species and BIII Lewis acid sites, demonstrating high catalytic activity (>99% conversion) and selectivity (>99%) for hydrogenation of a series of PAHs under mild conditions, which is much superior to noble metal-based catalysts in the literature. The unique catalytic properties of PMS-16 are derived from the synergistic work between Ni and Co metal species by separately activating different reactant molecules and generating local redox potential to prompt electron and charge transfer. The catalyst is simply produced and very stable for industrial applications.
机译:多环芳烃(PAHS)的部分氢化不仅可以产生高增值化学物质,而且还会减少环境污染。但是,由于PAH是一类无活性反应物,因此必须在极端条件下在极端条件下进行部分氢化反应。我们在此报告中有多孔金属硅酸盐(PMS)材料PMS-16,该材料由CO和NI双氧化还原活性物种和BIII Lewis酸位点组成,表现出高催化活性(> 99%的转化率)和选择性(> 99%)为了在轻度条件下进行一系列PAH的氢化,这比文献中的贵金属催化剂优越得多。 PMS-16的独特催化特性是通过分别激活不同反应物分子并产生局部氧化还原电位来引起电子和电荷转移的局部氧化还原电位来得出的。该催化剂仅生产,并且对于工业应用非常稳定。

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