乙炔
钙长石
乙烯
选择性
催化作用
沸石
化学
过渡金属
密度泛函理论
光化学
反应机理
过渡状态
计算化学
偶极子
材料科学
分子筛
物理化学
金属
无机化学
反应中间体
作者
Thana Maihom,Michael Probst,Jumras Limtrakul
摘要
dissociation, followed by the formation of an ethenyl intermediate and its subsequent conversion to ethylene. We find that Cu-CHA exhibits the highest catalytic activity among the studied catalysts and shows high selectivity for the hydrogenation of acetylene to ethylene based on the calculated overall reaction barrier and its selectivity parameter. The zeolite frameworks are found to stabilize all the species formed along the reaction pathway, but particularly at the transition states, thereby lowering all the activation barriers. We also find that the zeolite's dipole moment and metal charge are moderately accurate descriptors for predicting the overall activation barrier of the reaction. We use the sure-independence screening and sparsifying operator (SISSO) method to identify optimal nonlinear combinations of DFT-based descriptors,enabling accurate predictions without time-consuming reaction pathway calculations.
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