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氧还原过氧化氢原子分散催化FeNature Communications

Enhancing the ORR durability of single atomic Fe-N4 active sites with implanted SiO2 nanoparticles as radical and H2O2 inhibitors

Enhancing the ORR durability of single atomic Fe-N4 active sites with implanted SiO2 nanoparticles as radical and H2O2 inhibitors

研究概述

研究内容请参见论文原文。

谱图与表征信息

图3 · 原文PDF第5页
Fig. 3 | X-ray absorption spectroscopy characterization of SiO2/FeNSiC and other samples. a Fe K-edge X-ray absorption near-edge structure (XANES) and (b) Fourier transform k3-weighted Fe K-edge extended X-ray absorption fine structure (FT-EXAFS) spectra of SiO2/FeNSiC, FeNSiC, FeNC, Fe2SiO4, Fe foil, FeO, Fe2O3, and FePc. c, d Experimental (black line) and fitted (red cycle) Fe FT-EXAFS fitting signals
图5 · 原文PDF第7页
Fig. 5 | In situ XAFS and in situ ATR-IR measurements. a In situ X-ray absorption near-edge structure (XANES) of the Fe K-edge, (b) the corresponding Fourier transform k3-weighted Fe K-edge extended X-ray absorption fine structure (FT- EXAFS) spectra and (c) In situ ATR-IR spectra were recorded on different potentials
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