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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Mechanism of Selective Hydrogenation of α,β-Unsaturated Aldehydes on Silver Catalysts: A Density Functional Study
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Mechanism of Selective Hydrogenation of α,β-Unsaturated Aldehydes on Silver Catalysts: A Density Functional Study

机译:银催化剂上α,β-不饱和醛的选择性加氢机理:密度泛函研究

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Supported silver catalysts exhibit a remarkably high selectivity in the industrially important hydrogenation of α,β-unsaturated aldehydes to unsaturated alcohols. We carried out density functional calculations to clarify factors that affect the catalytic function of silver in hydrogenating unsaturated aldehydes. We examined the activity and the selectivity of model silver catalysts for acrolein, the simplest, yet most difficult unsaturated aldehyde to be selectively hydrogenated. We focused on describing bulky catalyst particles, represented by sites on extended silver surfaces, on the regular clean Ag(110) surface and the surface O_(sub)/Ag(111) with subsurface oxygen centers. On Ag(110) our results imply propanal, the undesired saturated aldehyde, to be the main product. In contrast, the calculations suggest a very high selectivity of O_(sub)/Ag(111) for the corresponding unsaturated alcohol, allyl alcohol, although the activity of this system is lower than that of clean silver. At variance with Pt(111), where the selectivity to allyl alcohol is strongly reduced by the hindered desorption of the latter, allyl alcohol and propanal products are predicted to desorb easily from both Ag(110) and O_(sub)/Ag(111) at common reaction temperatures. We also analyzed inherent limitations for an accurate description of the chemical regioselectivity by contemporary computational methods.
机译:在工业上重要的α,β-不饱和醛加氢成不饱和醇的过程中,负载的银催化剂显示出很高的选择性。我们进行了密度泛函计算,以阐明影响加氢不饱和醛中银催化功能的因素。我们研究了模型银催化剂对丙烯醛的活性和选择性,丙烯醛是最简单但最难被选择性氢化的不饱和醛。我们专注于描述庞大的催化剂颗粒,这些颗粒由扩展的银表面上的位置,常规清洁的Ag(110)表面以及具有次表面氧中心的O_(sub)/ Ag(111)表面表示。在Ag(110)上,我们的结果表明丙醛(不希望的饱和醛)成为主要产物。相反,计算表明O_(sub)/ Ag(111)对相应的不饱和醇烯丙醇的选择性很高,尽管该体系的活性低于纯银。与Pt(111)的变化不同,Pt(111)的阻解作用会大大降低其对烯丙醇的选择性,因此预言烯丙醇和丙醛产品会很容易从Ag(110)和O_(sub)/ Ag(111)解吸)在通常的反应温度下。我们还分析了固有局限性,以通过当代计算方法准确描述化学区域选择性。

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