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Activity and stability descriptors of Ni based alloy catalysts for dry reforming of methane: A density functional theory study

机译:基于Ni合金催化剂的甲烷干重整的活性与稳定性描述函数:密度泛函理论研究

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摘要

Experimentally determined catalytic activity and stability of alumina supported Ni and Ni3M (M = Fe, Co, Cu) alloy catalysts for the dry reforming of methane (DRM) were rationalized by density functional theory (DFT) studies. Ni3M slab models were prepared based on the experimental characterization data and DFT calculated segregation energies. First dehydrogenation step of CH4 which is the rate determining step in DRM was modeled on the Ni(111) and Ni3M(111) surfaces. Calculated reaction energetics show that Bronsted-Evans-Polanyi relationship holds true for this catalytic reaction system. A linear correlation was found between turnover frequency values of CH4 and the calculated dissociation energy of CH4. Interestingly, a linear correlation was found between percentage deactivation of catalysts and the calculated carbon adsorption energy. Based on these correlations, we propose that the dissociation energy of CH4 is a suitable activity descriptor and the adsorption energy of carbon is a suitable stability descriptor for these Ni and Ni3M alloy catalysts.
机译:通过密度泛函理论(DFT)研究,对实验测定的氧化铝负载Ni和Ni3M(M=Fe,Co,Cu)合金催化剂的甲烷干重整(DRM)催化活性和稳定性进行了合理化。根据实验表征数据和DFT计算的偏析能,制备了Ni3M平板模型。CH4的第一个脱氢步骤是DRM中的速率决定步骤,模拟了Ni(111)和Ni3M(111)表面。计算的反应能表明,Bronsted-Evans-Polanyi关系式适用于该催化反应体系。CH4的转换频率值与计算的CH4离解能之间存在线性相关。有趣的是,在催化剂失活百分比和计算的碳吸附能之间发现了线性关系。基于这些关联式,我们提出CH4的离解能是这些Ni和Ni3M合金催化剂的合适活性描述符,碳的吸附能是合适的稳定性描述符。

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