钼
催化作用
化学
配体(生物化学)
双原子分子
密度泛函理论
氨
无机化学
计算化学
劈理(地质)
活动中心
物理化学
分子
有机化学
材料科学
生物化学
受体
断裂(地质)
复合材料
作者
Maria White,Emily E. Claveau,Evangelos Miliordos,Konstantinos D. Vogiatzis
标识
DOI:10.1021/acs.jpca.3c07801
摘要
Dinitrogen fixation under ambient conditions remains a challenge in the field of catalytic chemistry due to the inertness of N2. Nitrogenases and heterogeneous solid catalysts have displayed remarkable performance in the catalytic conversion of dinitrogen to ammonia. By introduction of molybdenum centers in molecular complexes, one of the most azophilic metals of the transitional metal series, moderate ammonia yields have been attained. Here, we present a combined multiconfigurational/density functional theory study that addresses how ligand fields of different strengths affect the binding and activation of dinitrogen on molybdenum atoms. First, we explored with MRCI computations the diatomic Mo–N and triatomic Mo–N2 molecular systems. Then, we performed a systematic examination on the stabilization effects introduced by external NH3 ligands, before we explore model neutral and charged complexes with different types of ligands (H2O, NH3, and PH3) and their consequences on the N2 binding and activation.
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