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二氧化碳转化光催化/光电催化MnCoJournal of the American Chemical Society

Engineering Spatially Adjacent Redox Sites with Synergistic Spin Polarization Effect to Boost Photocatalytic CO2 Methanation

Engineering Spatially Adjacent Redox Sites with Synergistic Spin Polarization Effect to Boost Photocatalytic CO2 Methanation

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3页
Figure 2. (A) Mn K-edge XANES spectra of 0.8-Mn/Co3O4 along with those of Mn foil, MnO, and Mn2O3 as reference standards. (B) Fourier transformed EXAFS spectra of 0.8-Mn/Co3O4, Mn foil, MnO, and Mn2O3. (C) Corresponding WTs for the K3-weighted Mn K-edge EXAFS signals of 0.8-Mn/Co3O4, Mn foil, MnO, and Mn2O3. (D) Co K-edge XANES spectra of Co3O4 and 0.8-Mn/Co3O4 along with those of Co foil, CoO, and Co2O3 as reference standards. (E) Fourier transformed EXAFS spectra of Co3O4 and 0.8-Mn/Co3O4. (F) The schematically illustration of substitute CoOct by MnOct.
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