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光催化/光电催化TiJournal of Materials Science & Technology

MXene-based 2D/2D Ti3C2/TiO2 heterojunction with spatially separated redox sites for efficient photocatalytic N2 reduction towards NH3

MXene-based 2D/2D Ti3C2/TiO2 heterojunction with spatially separated redox sites for efficient photocatalytic N2 reduction towards NH3

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5页
Fig. 2. (a) Ti K -edge XANES spectra. Inset gives average Ti valence state determination of Ti3 C2 MXene and TiO2 Ns using the linear combination fitting of absorption edge energies. (b) Corresponding Fourier-transformed EXAFS spectra in R space of Ti foil, reference TiO2 , TiO2 Ns and Ti3 C2 MXene. (c) High-resolution XPS Ti 2p spectra of TiO2 Ns and Ti3 C2 MXene. (d) EPR spectra of TiO2 Ns and 6TC/T with and without light irradiation. (e) N2 -TPD curves of TiO2 Ns and 6TC/T. (f) Transient photocurrent responses of TiO2 Ns and 6TC/T at Ar and N2 atmospheres. In-situ FTIR spectra for photocatalytic N2 reduction process over (g) TiO2 Ns, (h) 6TC/T and (i) 6TC-300/T.
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