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首页> 外文期刊>Structural Chemistry >Structural diversity of metallacycle intermediates for ethylene dimerization on heterogeneous NiMCM-41 catalyst: a quantum chemical perspective
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Structural diversity of metallacycle intermediates for ethylene dimerization on heterogeneous NiMCM-41 catalyst: a quantum chemical perspective

机译:乙烯二聚化在非均相NIMCM-41催化剂中的算法的结构多样性:量子化学视角

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Nanocluster models were investigated to explore the diversity of metallacycle intermediates for ethylene dimerization over NiMCM-41 at B3LYP/6-311+G* and M06/Def2-TZVP. The thermodynamic favorability of the formation of matallacycle with respect to the ring size of silica varied in the sequence of 6T3T2T5T4T in terms of Gibbs free energy (ranging from -10.01 to 16.66kcal/mol at B3LYP/6-311+G*). The reaction cycle faced lower barriers on 3T and 2T clusters, however. The formation of the intermediate and complexation of 1-butene led to positive total charges on the hydrocarbon segment of the complex, being maximized on four-membered sites and minimized on two-membered ones. Further insights are also provided with QTAIM, frontier orbital, and FTIR analyses.
机译:研究了纳米光幕模型,探讨了B3LYP / 6-311 + G *和M06 / DEF2-TZV在NiMCM-41上乙烯二聚化的金属族中间体的多样性。 在吉布斯自由能量的序列中,雾化术相对于二氧化硅的环尺寸的形成的热力学优势在吉布斯的自由能(在B3LYP / 6的-10.01至16.66kcal / mol的范围内变化 -311 + g *)。 然而,反应循环面对3T和2T簇的较低屏障。 1-丁烯的中间体和络合的形成导致复合物的烃片段上的正总电荷,最大化在四元位点上,并最小化在两元组上。 Qtaim,Frontier Orbital和FTIR分析还提供了进一步的见解。

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