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首页> 外文期刊>Journal of Catalysis >The mechanism of NO and N2O decomposition catalyzed by short-distance Cu(I) pairs in Cu-ZSM-5: A DFT study on the possible role of NO and NO2 in the [Cu-O-Cu](2+) active site reduction
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The mechanism of NO and N2O decomposition catalyzed by short-distance Cu(I) pairs in Cu-ZSM-5: A DFT study on the possible role of NO and NO2 in the [Cu-O-Cu](2+) active site reduction

机译:Cu-ZSM-5中短距离Cu(I)对催化的NO和N2O分解的机制:DFT研究关于[Cu-O-Cu](2+)活性部位的NO和NO2的可能作用 减少

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The reactivity between NO and the oxidized form of a short-distance dinuclear Cu-ZSM-5 catalyst (ZCu(2)O) was investigated. ZCu(2)O, which contains the [Cu-O-Cu](2+) bridge coordinated at the opposite T11 positions of the M6 ring of ZSM-5, is obtained by the spin-forbidden decomposition of N2O on the reduced form of the catalyst, ZCu(2), with an activation energy of about 18 kcal mol(-1). The further addition of NO to the [Cu-O-Cu](2+) unit of ZCu(2)O occurs in the doublet state without activation energy and gives NO2. After desorption, which requires 39.9 kcal mol(-1), NO2 decomposes on a second ZCu(2)O site, giving NO again and O-2. Three reaction paths were defined for the latter reaction, with activation energies ranging from about 30 to 42-43 kcal mol(-1). Final O-2 desorption is endothermic. The effect of enthalpy and Gibbs free energy contributions at 298.15 and at 7731( was also shown and discussed. According to the present calculations, the [Cu-O-Cu](2+) bridge can easily be broken by reaction with NO but the desorption and further decomposition of NO2 are characterized by energetics which make the above mechanism slower than the spin-allowed decomposition of N2O on similar sites, already reported in the literature. The above conclusions were based on a kinetic analysis according to the Energetic Span Model. (C) 2018 Elsevier Inc. All rights reserved.
机译:研究了短距离二核Cu-ZSM-5催化剂(ZCU(2)O)的NO与氧化形式的反应性。 zcu(2)o包含在ZSM-5的M6环的相对T11位置配位的[Cu-O-Cu](2+)桥,通过旋转禁止的N2O在减少的形式上获得催化剂,ZCU(2),活化能为约18千卡(-1)。在没有激活能量的双细胞状态下,ZCU(2)o的[Cu-O-Cu](2+)单位的进一步添加NO NO NO NO OF发生并给出NO 2。在解吸后,需要39.9 kcal摩尔(-1),NO2在第二个ZCU(2)O位点上分解,再次给药和O-2。为后一种反应定义三种反应路径,其活化能量范围为约30-42-43kcal摩尔(-1)。最终的O-2解吸是吸热的。焓和吉布斯自由能量贡献在298.15和7731(也显示和讨论的效果。根据本计算,[Cu-O-Cu](2+)桥可以容易地通过反应而破裂,但是NO2的解吸和进一步分解的是能量学,使得在文献中已经报道了上述机制比N2O对类似地点的旋转允许分解的速度慢。上述结论是基于根据能量跨度模型的动力学分析。 (c)2018年Elsevier Inc.保留所有权利。

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