RESEARCH / A0030

A Monolithic High‐Entropy Aerogel Anode for Stable and Low‐Overpotential Oxygen Evolution

Oxygen evolutionVCrFeCoNiSmall

Read the original paper · 10.1002/smll.74998 ↗

Source figures may contain other techniques and soft X-ray spectra. C, N and O measurements are outside our current hard-XAFS testing range.

Figure 4 · PDF page 7
FIGURE 4 Characterization of chemical states of NiCoFeCrV@Ni aerogel. (a) Ni K-edge XANES spectra of the Ni foil, NiO, LiNiO2, and NiCoFeCrV@Ni. (b) FT-EXAFS spectra of the Ni foil, NiO, LiNiO2, and NiCoFeCrV@Ni in the 0–6 Å region. (c) Wavelet transforms of the k2-weighted EXAFS signals of Ni in the NiCoFeCrV@Ni. (d) Co K-edge XANES spectra of the Co foil, CoO, Co3O4, and NiCoFeCrV@Ni. (e) FT-EXAFS spectra of the Co foil, CoO, Co3O4, and NiCoFeCrV@Ni in the 0–6 Å region. (f) Wavelet transforms of the k2-weighted EXAFS signals of Co in the NiCoFeCrV@Ni. (g) Fe K-edge XANES spectra of the Fe foil, Fe2O3, FeO, and NiCoFeCrV@Ni. (h) FT-EXAFS spectra of the Fe foil, Fe2O3, FeO, and NiCoFeCrV@Ni in the 0–6 Å region. (i) Wavelet transforms of the k2-weighted EXAFS signals of Fe in the NiCoFeCrV@Ni. (j) Cr K-edge XANES spectra of the Cr foil, Cr2O3, CrO3, and NiCoFeCrV@Ni. (k) FT-EXAFS spectra of the Cr foil, Cr2O3, CrO3, and NiCoFeCrV@Ni in the 0–6 Å region. (l) Wavelet transforms of the k2-weighted EXAFS signals of Cr in the NiCoFeCrV@Ni. (m) V K-edge XANES spectra of the V foil, VO2, V2O5, and NiCoFeCrV@Ni. (n) FT- EXAFS spectra of the V foil, VO2, V2O5, and NiCoFeCrV@Ni in the 0–6 Å region. (o) Wavelet transforms of the k2-weighted EXAFS signals of V in the NiCoFeCrV@Ni.
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