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Mechanistic insights of selective syngas conversion over Zn grafted on ZSM-5 zeolite

机译:机械的见解有选择性的合成气转换/锌嫁接ZSM-5沸石

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Metal-exchanged zeolites have attracted broad interest in alkane activation, NH3 selective catalytic reduction (NH3-SCR) reactions etc. Very recently, Chen et al. (Angew. Chem. Int. Ed. 2020, 59, 6529-6534) reported that Zn2+-ion exchanged aluminosilicate zeolites catalyze syngas conversion efficiently toward ethane with a high selectivity. Although the main active site of the catalyst has been proposed to be [Zn-O-Zn](2+) by solid state NMR experiments, the detailed reaction mechanism remains to be elucidated. Based on the intermediates detected experimentally, theoretical calculations herein propose a reaction pathway for ethane formation along with the intermediates [Zn-OCH2-Zn](2+) -> [Zn-CH2CO-Zn](2+) -> [Zn-OCH2CH2-Zn](2+) -> [Zn-OH-Zn-C2H5](2+) grafted on a ZSM-5 zeolite. Combined with the kinetic analysis of the reaction pathways and the Gibbs free energy surface of alkane formation, the overall syngas conversion to ethane is nicely consistent with the experimental observations. On the basis of the evolution of the natural orbitals along the reaction coordinates, ZSM-5 not only provides an environment on which to graft the highly dispersed Zn species as [Zn-O-Zn](2+) but also decreases the barriers by efficient charge transfer. The in-depth understanding gained in this work may provide important guidance for the more rational design and optimization of catalysts for syngas conversion.
机译:Metal-exchanged沸石吸引了广泛的兴趣烷烃活化,NH3选择性催化还原反应(NH3-SCR)等。最近,陈et al。(Angew。2020、59、6529 - 6534年)报道,Zn2 +离子铝硅酸盐交换沸石催化合成气转化效率对乙烷高选择性。催化剂提出了[Zn-O-Zn](2 +)固态核磁共振实验中,详细的反应机理还有待阐明。通过实验、理论计算提出对乙烷反应途径形成随着中间体[Zn-OCH2-Zn] (2 +) - >[Zn-OH-Zn-C2H5](2 +)嫁接ZSM-5沸石。结合的动力学分析反应途径和吉布斯自由能烷烃表面形成,总体合成气转换为乙烷是很好地符合实验观察。自然的发展轨道上反应坐标,ZSM-5不仅提供了一个环境的移植高度分散锌物种[Zn-O-Zn](2 +)也减少壁垒的有效电荷转移。这项工作可以提供重要的指导更合理的设计和优化合成气转化的催化剂。

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