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Stepwise addition reactions in ammonia synthesis: A first principles study

机译:氨合成中的逐步加成反应:第一个原理研究

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Catalytic ammonia synthesis is believed to proceed via dissociation of N-2 and H-2 with subsequent stepwise addition reactions from an adsorbed nitrogen atom to NH3. The first step, N-2 dissociation, has been thoroughly studied. However, little is known about the microscopic details of the stepwise addition reactions. To shed light on these stepwise addition reactions, density functional theory calculations with the generalized gradient approximation are employed to investigate NHx (x=1,3) formation on Ru(0001). Transition states and reaction barriers are determined in each elementary step. It is found that the reaction barriers for stepwise addition reactions are rather high, for example, the barrier for NH hydrogenation is calculated to be 1.28 eV, which is comparable with that of N-2 dissociation. In addition, one of the stepwise addition reactions on a stepped surface is also considered. The reaction barrier is found to be much higher than that of N-2 dissociation on the same stepped surface, which indicates the importance of stepwise addition reactions in ammonia synthesis. (C) 2001 American Institute of Physics. [References: 24]
机译:据信催化氨的合成通过N-2和H-2的解离以及随后的从吸附的氮原子到NH 3的逐步加成反应而进行。第一步,N-2离解已被彻底研究。但是,对于逐步加成反应的微观细节知之甚少。为了阐明这些逐步加成反应,使用具有广义梯度近似的密度泛函理论计算来研究Ru(0001)上NHx(x = 1,3)的形成。在每个基本步骤中都确定了过渡态和反应势垒。发现逐步加成反应的反应势垒相当高,例如,NH加氢的势垒经计算为1.28eV,与N-2离解的相当。另外,还考虑了在阶梯状表面上的逐步加成反应之一。发现该反应障碍远高于同一阶梯表面上的N-2解离,这表明在氨合成中逐步加成反应的重要性。 (C)2001美国物理研究所。 [参考:24]

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