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MnFeCoNiCuAdvanced Science

Sulfur Bridge Geometry Boosts Selective FeIV═O Generation for Efficient Fenton-Like Reactions

Sulfur Bridge Geometry Boosts Selective FeIV═O Generation for Efficient Fenton-Like Reactions

研究概述

研究内容请参见论文原文。

谱图与表征信息

图2 · 原文PDF第4页
Figure 2. Atomic structural and chemical states analysis of as-prepared catalysts. a) Fourier-transformed magnitudes (FT|k3χ(k)|) of the experimental Fe K-edge EXAFS signals of catalysts and relevant references (Fe foil and FeS). b) The corresponding EXAFS fitting curves in R-space, along with the schematic Fe atomic structure models. c) WT plots of catalysts and relevant references. d) S 2p XPS spectra of catalysts. e) Fe K-edge XANES spectra of catalysts and relevant references. f) Projected density of states (PDOS) of Fe atoms in Fe1–Fe1/CN and Fe1–S–Fe1/CN. The grey-filled line corresponds to the Fermi level (Ef = 0), and the d-band center is also suggested with the dashed line. g) Fourier-transformed EXAFS spectra of atomic metal sites with or without S coordination. Insert: Loading comparison of M1–S/CN and M1–N/CN (M = Cu, Co, Ni, or Mn).
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