4.6 Article

Improved Electrocatalytic Selectivity and Activity for Ammonia Synthesis on Diporphyrin Catalysts

期刊

JOURNAL OF PHYSICAL CHEMISTRY C
卷 -, 期 -, 页码 -

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acs.jpcc.2c05646

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资金

  1. VILLUM FONDEN
  2. Danish National Research Foundation Centers of Excellence
  3. [9455]
  4. [DNRF149]

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This study investigates the selectivity and activity of diporphyrin catalysts in electrocatalytic nitrogen reduction reaction (NRR) using density functional theory simulations. The results demonstrate that diporphyrins can selectively synthesize NH3 without producing H2 gas under ambient conditions. This is achieved through chelating adsorption of N2 between two metal atoms, enhancing the binding of N2 and promoting N2 reduction.
The electrocatalytic nitrogen reduction reaction (NRR) under mild conditions is one of the most essential challenges in chemistry. Catalysts for electrochemical NRR play a crucial role in realizing this NH3 synthesis. In this work, we use density functional theory simulations to investigate the electro-catalytic NRR selectivity and activity on dual-atom catalysts, especially diporphyrins. We classify catalysts on the basis of adsorption of *N2 versus *H. Our results demonstrate the possibility of diporphyrins to bind and reduce N2 without producing H2 under ambient conditions, promoting high selectivity toward NH3 formation. This is due to chelating adsorption of N2, where N2 sits between two metal atoms, enhancing the binding of *N2. Additionally, the chelating adsorption of N2 activates N-N bond breaking and provides more favorable scaling relations on the adsorption energies of key intermediates, leading to enhanced NRR activity.

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