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首页> 外文期刊>Journal of Catalysis >Acid strength and bifunctional catalytic behavior of alloys comprised of noble metals and oxophilic metal promoters
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Acid strength and bifunctional catalytic behavior of alloys comprised of noble metals and oxophilic metal promoters

机译:贵金属和亲金属促进剂组成的合金的酸强度和双功能催化行为

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The promotion of metal catalysts with partially oxidized oxophilic MO_x species, such as ReOx-promoted Rh, has been demonstrated to produce Br?nsted acid sites that can promote hydrogenolysis of oxygenate intermediates such as those found in biomass-derived species. A wide variety of alloy compositions and structures are examined in this work to investigate strongly acidic promoters by using DFT-calculated deprotonation energies (DPE) as a measure of acid strength. Sites with the highest acid strength had DPE less than 1100 kJ mol~(-1), similar to DPE values of heteropolyacids or acid-containing zeolites, and were found on alloys composed of an oxophilic metal (such as Re or W) with a noble metal (such as Rh or Pt). NH_3 adsorbs more strongly to sites with increasing acid strength and the activation barriers for acid-catalyzed ring opening of a furan ring decrease with increasing acid strength, which was also shown to be stronger for OH acid sites bound to multiple oxophilic metal atoms in a three-fold configuration rather than OH sites adsorbed in an atop configuration on one oxophilic metal, indicating that small MO_x clusters may yield sites with the highest acid strength.
机译:已经证明,用部分氧化的亲氧MO_x物质(例如ReOx促进的Rh)促进金属催化剂会产生布朗斯台德酸位点,从而可以促进含氧化合物中间体(如在生物质衍生物种中发现的中间体)的氢解作用。通过使用DFT计算的去质子能(DPE)作为酸强度的量度,在这项工作中检查了各种各样的合金成分和结构,以研究强酸性促进剂。酸强度最高的位点的DPE小于1100 kJ mol〜(-1),与杂多酸或含酸沸石的DPE值相似,并且发现在由嗜热金属(例如Re或W)和贵金属(例如Rh或Pt)。 NH_3对酸强度增加的位点的吸附更强,并且呋喃环的酸催化开环的激活势垒随着酸强度的增加而降低,这也表明在三个位置上与多个亲氧金属原子键合的OH酸位点更强-构型而不是以一种构型吸附在一种亲热金属上的OH部位,这表明较小的MO_x簇可产生具有最高酸强度的部位。

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