| Literature DB >> 33172992 |
Haiyuan Zou1,2, Weifeng Rong1, Shuting Wei1, Yongfei Ji3, Lele Duan4,5.
Abstract
Using renewable electricity to synthesize ammonia fromEntities:
Keywords: graphdiyne; nitrogen reduction reaction; pressurized electrocatalysis; single-atom catalysts
Year: 2020 PMID: 33172992 PMCID: PMC7703585 DOI: 10.1073/pnas.2015108117
Source DB: PubMed Journal: Proc Natl Acad Sci U S A ISSN: 0027-8424 Impact factor: 11.205
Fig. 1.(A) Schematic illustration of the fabrication of M SA/GDY (M = Rh, Ru, and Co). (B, C, H, I, N, and O) HAADF-STEM images of Rh, Ru, and Co SA/GDY. (D–G, J–M, and P–S) Corresponding EDX mapping of M SA/GDY (Scale bar, 5 nm.)
Fig. 2.XPS and XAS spectra of M SA/GDY. (A–C) Deconvoluted Rh 3d, Ru 3p, and Co 2p XPS spectra. (D) Rh K-edge XANES and (E) FT-EXAFS spectra of Rh SA/GDY, along with reference Rh foils.
Fig. 3.Pressurized ENRR measurements. (A) A plot of the solubility of N2 gas versus the partial pressure. (B) Schematic of the home-made pressurized ENRR setup. (C) Ar- and N2-saturated LSV curves of Rh SA/GDY under ambient and 55-atm conditions, respectively. (D) The NH3 yields and their corresponding FEs of Rh SA/GDY under ambient and 55-atm conditions, respectively. (E) Comparison of the NH3 yield, FE, and jNH3 for Rh SA/GDY versus the exerted N2 pressures. (F) Cycling stability results of Rh SA/GDY at −0.2 V. (G and H) 1H NMR spectra and corresponding 15NH4+ yield with the isotopic 15N2 for 6- and 12-h electroreduction. (I) Comparison of the optimum NH3 yield, FE, and jNH3 for the prepared Rh, Ru, and Co SA/GDY.
Fig. 4.(A) Free-energy surfaces for N2 reduction following the distal, alternating, and enzymatic pathways. (B) The hybrid reaction pathway via the low-energy intermediates. (C) The optimized structures of intermediates in Fig. 4. Gray, green, blue, white spheres present the C, Rh, N, H atoms, respectively. Note that in the alternating pathways and the enzymatic pathways, two N are hydrogenated alternatively; the species take side-on adsorption patterns in the alternating and distal pathways but end-on patterns in the enzymatic pathway.