首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >A Periodic Structure Density Functional Theory Study of Propylene Chemisorption in Acidic Chabazite: Effect of Zeolite Structure Relaxation
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A Periodic Structure Density Functional Theory Study of Propylene Chemisorption in Acidic Chabazite: Effect of Zeolite Structure Relaxation

机译:酸性菱沸石中丙烯化学吸附的周期性结构密度泛函理论研究:沸石结构弛豫的影响

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摘要

Density functional theory (DFT) periodic structure calculations have been employed to investigate the interaction of propylene within the acidic chabazite zeolite (Si/Al = 11). In agreement with previous studies, it is found that secondary alkoxy formation is preferred over primary alkoxy formation. Steric constraints appear not to affect the course of the reaction. Analysis of the radial distribution of the zeolitic atoms with respect to the Bronsted site aluminum atom allows further insight into the reaction. Changes in the zeolite oxygen atom position are more significant than those of the zeolite silicon atoms. Relaxation of unit cell size and shape has a dramatic influence on energetic parameters of the reaction path.
机译:密度泛函理论(DFT)的周期性结构计算已用于研究酸性菱沸石(Si / Al = 11)中丙烯的相互作用。与先前的研究一致,发现仲烷氧基的形成优于伯烷氧基的形成。立体约束似乎不影响反应过程。分析沸石原子相对于布朗斯台德位点铝原子的径向分布,可以进一步了解该反应。沸石氧原子位置的变化比沸石硅原子的变化更显着。晶胞尺寸和形状的松弛对反应路径的能量参数具有显着影响。

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