化学
过渡金属
价(化学)
限制
金属
过渡状态
氧原子
氧气
吸附
密度泛函理论
Atom(片上系统)
结晶学
计算化学
立体化学
分子
物理化学
催化作用
有机化学
嵌入式系统
工程类
机械工程
计算机科学
作者
Jaime Gómez-Díaz,Crisa Vargas‐Fuentes,Núria López
摘要
We have investigated the formation of C-N bonds from individual atoms and single hydrogenated moieties on a series of transition metals. These reactions play a role in HCN formation at high oxygen coverage, also known as Andrussow oxidation, and they are fundamental to understand the ability of other materials to form part of alloys where Pt is the major component. Dehydrogenations take place quite easily under these high oxygen conditions and thus, the C+N, HC+N, and N+CH recombinations to form HCN or its isomer CNH might represent the rate-limiting steps for the reaction. For all the metals in the present study we have found that the activation energy for the reactions between HxC and NHy (x,y = 0,1) involved in C-N formation follow a linear relationship with the adsorption energy of the N atom. This is due to the common nature of all these transition states, where N-containing fragments get activated from three-fold hollow sites to bridge positions. The slopes of the linear dependence, though, depend on the valence of the N fragment, i.e., smaller slopes are found for NH moieties with respect to N ones.
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