化学
硼
催化作用
单独一对
原子轨道
密度泛函理论
Atom(片上系统)
分子轨道
石墨烯
氮气
无机化学
分子
计算化学
光化学
电子
有机化学
纳米技术
嵌入式系统
物理
材料科学
量子力学
计算机科学
作者
Chuangwei Liu,Qinye Li,Chengzhang Wu,Jie Zhang,Yonggang Jin,Douglas R. MacFarlane,Chenghua Sun
摘要
Boron has been explored as p-block catalysts for nitrogen reduction reaction (NRR) by density functional theory. Unlike transition metals, on which the active centers need empty d orbitals to accept the lone-pair electrons of the nitrogen molecule, the sp 3 hybrid orbital of the boron atom can form B-to-N π-back bonding. This results in the population of the N–N π* orbital and the concomitant decrease of the N–N bond order. We demonstrate that the catalytic activity of boron is highly correlated with the degree of charge transfer between the boron atom and the substrate. Among the 21 concept-catalysts, single boron atoms supported on graphene and substituted into h-MoS 2 are identified as the most promising NRR catalysts, offering excellent energy efficiency and selectivity against hydrogen evolution reaction.
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