4.8 Article

Graphdiyne-based metal atomic catalysts for synthesizing ammonia

Journal

NATIONAL SCIENCE REVIEW
Volume 8, Issue 8, Pages -

Publisher

OXFORD UNIV PRESS
DOI: 10.1093/nsr/nwaa213

Keywords

graphdiyne; atomic catalyst; two-dimensional carbon material; ammonia; nitrogen reduction reaction

Funding

  1. National Natural Science Foundation of China [21790050, 21790051, 21771156]
  2. National Key Research and Development Project of China [2016YFA0200104, 2018YFA0703501]
  3. Key Program of the Chinese Academy of Sciences [QYZDY-SSW-SLH015]
  4. Early Career Scheme (ECS) Fund from the Research Grant Council (RGC) in Hong Kong [PolyU 253026/16P]

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Researchers have successfully synthesized a novel catalyst Pd-GDY, showing excellent electrocatalytic performance in nitrogen reduction with high yield and selectivity. The catalyst exhibits extremely high NH3 yield and reaction selectivity in neutral media, with minimal performance degradation.
Development of novel catalysts for nitrogen reduction at ambient pressures and temperatures with ultrahigh ammonia (NH3) yield and selectivity is challenging. In this work, an atomic catalyst with separated Pd atoms on graphdiyne (Pd-GDY) was synthesized, which shows fascinating electrocatalytic properties for nitrogen reduction. The catalyst has the highest average NH3 yield of 4.45 +/- 0.30 mg(NH3) mg(Pd)(-1) h(-1), almost tens of orders larger than for previously reported catalysts, and 100% reaction selectivity in neutral media. Pd-GDY exhibits almost no decreases in NH3 yield and Faradaic efficiency. Density functional theory calculations show that the reaction pathway prefers to perform at the (Pd, C1, C2) active area because of the strongly coupled (Pd, C1, C2), which elevates the selectivity via enhanced electron transfer. By adjusting the p-d coupling accurately, reduction of self-activated nitrogen is promoted by anchoring atom selection, and side effects are minimized.

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