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Photocatalytic Hydrogen Evolution Using Bi-Metallic (Ni/Pt) Na2Ti3O7 Whiskers: Effect of the Deposition Order

机译:使用双金属(Ni / Pt)Na2Ti3O7晶须的光催化氢气进化:沉积顺序的效果

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摘要

Photocatalytic hydrogen production through ethanol photo-reforming using Na2Ti3O7 whiskers increases if the sodium titanate is decorated with well-known metallic catalysts such as Ni and Pt. Whereas wet impregnation with nickel gives only a slight increase in the activity, photo-deposition of Pt increased the H2 production by more than one order of magnitude. Through the combination of both co-catalysts (Ni and Pt) a superior performance in terms of H2 production is further observed. However, hydrogen yield is largely enhanced (almost three-fold), up to 778 μmol·g−1·h−1, if the Pt is photo-deposited on the surface of the catalyst before wet impregnation with Ni species (NTO/Pt/Ni) compared to H2 yield (283 μmol·g−1·h−1) achieved with the catalyst prepared in the reverse order (NTO/Ni/Pt). Structural, morphological, optical, and chemical characterization was carried out in order to correlate physicochemical properties with their photocatalytic activity. The X-ray photoelectron spectroscopy (XPS) results show a higher concentration of Pt2+ species if this metallic layer is under the nickel oxide layer. Moreover, X-ray diffraction patterns (XRD) show that Na2Ti3O7 surface is modified for both metal decoration processes.
机译:如果钛酸钠用众所周知的金属催化剂如Ni和Pt,则通过使用Na2Ti3O7晶须的光催化氢气产生通过使用Na2Ti3O7晶须的乙醇的重整。虽然用镍的湿浸渍只能略有增加的活性,PT的光沉积增加了H2的产量超过一种幅度。通过助催化剂(Ni和Pt)的组合进一步观察到H 2产生的优异性能。然而,如果Pt在湿浸渍浸渍浸渍Ni物种(NTO / PT)之前,则氢率大大提高(几乎三倍),高达778μmol·G-1·H-1,如果PT是光沉积在催化剂的表面上(NTO / PT) / Ni)与以相反顺序制备的催化剂(NO / Ni / Pt)达到的H 2产率(283μmol·G-1·H-1)。进行结构,形态学,光学和化学表征,以便将物理化学性质与光催化活性相关。 X射线光电子能谱(XPS)结果显示出较高浓度的Pt2 +物种,如果该金属层在氧化镍层下面。此外,X射线衍射图(XRD)表明为金属装饰工艺修改了Na2Ti3O7表面。

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