化学
石墨烯
催化作用
固氮
氨
三键
惰性
氨生产
氮气
吸附
光化学
无机化学
纳米技术
物理化学
双键
有机化学
材料科学
作者
Xiaofei Li,Qin-Kun Li,Jin Cheng,Lingling Liu,Qing Yan,Yingchao Wu,Xianghua Zhang,Zhiyong Wang,Qi Qiu,Yi Luo
摘要
Nitrogen fixation is one of the most important issues but a long-standing challenge in chemistry. Here, we propose FeN3-embedded graphene as the catalyst for nitrogen fixation from first-principles calculations. Results show that in view of the chemical coordination, the FeN3 center is highly spin-polarized with a localized magnetic moment substantially to promote N2 adsorption and activate its inert N-N triple bond. The synergy between the graphene and FeN3 equips the system with novel features for the catalytic conversion of the activated N2 into NH3 via a six-proton and six-electron process, following three possible reaction pathways at room temperature. Our findings provide a rational paradigm for catalytic nitrogen fixation that would be conducive to ammonia production.
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