催化作用
缩放比例
氨
氨生产
过渡金属
密度泛函理论
比例(比率)
材料科学
化学
无机化学
计算化学
数学
物理
有机化学
几何学
量子力学
作者
Rachelle M. Choueiri,Stephen W. Tatarchuk,O. F. Parker,William F. Cooper,Leanne D. Chen
标识
DOI:10.26434/chemrxiv-2024-n35nl
摘要
The ammonia oxidation reaction is a reaction of great interest for its potential to upcycle ammonia waste, creating fertilizer salts beneficial for the agricultural industry. Currently, AOR catalysts typically suffer either from high onset potentials or catalyst poisoning, and better catalyst materials must be found in order for AOR to be viable for large-scale fertilizer production. Experimentally, it is difficult to study the interactions of adsorbates on catalyst surfaces on an atomic level, whereas computational studies provide us with a means to study catalysts on this scale. In this study, we use density functional theory calculations to develop linear scaling relations for ammonia oxidation using a set of ten reference metals. The scaling relations were used in a microkinetic model to predict the most active transition metal electrocatalysts for the AOR.
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