| Literature DB >> 29955067 |
Ya-Rong Zheng1, Ping Wu2, Min-Rui Gao3, Xiao-Long Zhang1, Fei-Yue Gao1, Huan-Xin Ju4, Rui Wu1, Qiang Gao1, Rui You5, Wei-Xin Huang5, Shou-Jie Liu6, Shan-Wei Hu4, Junfa Zhu4, Zhenyu Li2, Shu-Hong Yu7.
Abstract
TransitionEntities:
Year: 2018 PMID: 29955067 PMCID: PMC6023930 DOI: 10.1038/s41467-018-04954-7
Source DB: PubMed Journal: Nat Commun ISSN: 2041-1723 Impact factor: 14.919
Fig. 1Synthesis and physical characterization of o-CoSe2|P. a Schematic illustration of the P-doping-assisted structural phase transition from c-CoSe2 to o-CoSe2|P through an annealing process. Violet, green, and pink balls correspond to Co, Se, and P atoms, respectively. b, c SEM (scale bar, 400 nm) and TEM (scale bar, 200 nm) images of o-CoSe2|P nanobelts. Inset in c shows corresponding SAED pattern. Scale bar, 5 nm–1. d False-color HAADF image indicates the relative thickness of a porous o-CoSe2|P nanobelt. Scale bar, 40 nm. e HAADF-STEM image of the o-CoSe2|P. Red arrow in e indicates atomic defects at the pore edge. The o-CoSe2|P crystal structure is shown in e with Co, Se, and P in blue, green, and pink, respectively. Scale bar, 1 nm. f Typical XRD pattern of the marcasite o-CoSe2|P. g STEM-EDX elemental mapping of o-CoSe2|P revealing clearly the homogeneous distribution of Co (yellow), Se (azure), and P (red), respectively. Scale bar, 200 nm
Fig. 2P-doping-assisted structural phase transition. a–d Temperature-dependent XRD patterns, P 2s XPS spectra, EDX spectra, and Raman spectra reveal the structural phase change from c-CoSe2 to o-CoSe2|P, respectively. e Schematic of the P-doping-assisted phase-transition process from cubic to orthorhombic phases in CoSe2
Fig. 3HER electrocatalysis on o-CoSe2|P. a Polarization curves for the HER on c-CoSe2, annealed c-CoSe2, o-CoSe2|P, and commercial Pt/C catalyst (20 wt%). Catalyst loading: ~1.02 mg cm−2. Sweep rate: 10 mV s−1. b Tafel plots for various catalysts derived from a. c Rotating ring disk electrode tests of H2 evolution and oxidation on various catalyst-modified glassy carbon electrodes. The Pt-ring electrode was kept at 0.5 V for the oxidation of H2 that was generated on the disk electrode. d EIS Nyquist plots of c-CoSe2, annealed c-CoSe2, and o-CoSe2|P catalysts. Inset shows Nyquist plots at high-frequency range. Z′ is the real impedance and Z′′ is the imaginary impedance. e Plots showing the extraction of the Cdl for various catalysts. f Digital photo shows the generated H2 bubbles on o-CoSe2|P-modified carbon fiber paper at 250 mV overpotential in sea water. g Comparison of onset potential and overpotential for various non-noble-metal HER single catalysts in alkaline electrolytes. Values were plotted from references where they are reported as such (Supplementary Table 1). h Chronoamperometric responses (j ~ t) recorded on o-CoSe2|P at a constant overpotential of 250 mV. Insets: polarization curves (left) and Nyquist plots (right) recorded from o-CoSe2|P catalyst before and after 2000 potential cycles. All the measurements were performed in Ar-saturated 1 M KOH (pH ~ 14) and the reported data were iR-compensated
Fig. 4Comparison of surface structure of CoSe2 before and after P-doping. a, b P 2p XPS spectra and valence band edge XPS spectra of c-CoSe2 and o-CoSe2|P catalysts, respectively. c, d Se K-edge X-ray absorption near-edge spectra and corresponding k2-weighted Fourier transforms spectra for c-CoSe2, Se foil, and o-CoSe2|P catalysts. e Comparison of SCN− ions effects on the HER activities of c-CoSe2 and o-CoSe2|P, respectively. Inset shows the schematic of Co centers blocked by the SCN− ions
Fig. 5DFT calculation and enhancement mechanism. a Calculated charge density distribution for o-CoSe2|P (up) and c-CoSe2 (down) catalysts. b Free energy diagrams for hydrogen adsorption at different sits on the (111) surface of o-CoSe2|P (8 wt%) and c-CoSe2. c Calculated total densities of states of c-CoSe2 and o-CoSe2|P with the Fermi level aligned at 0 eV. d, e Ultraviolet-photoelectron spectra and H2 temperature-programmed desorption analyses for c-CoSe2 and o-CoSe2|P catalysts, respectively