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Visible light-active nitrogen-doped TiO_2 thin films prepared by DC magnetron sputtering used as a photocatalyst

机译:通过直流磁控溅射制备的可见光活性氮掺杂TiO_2薄膜作为光催化剂

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The visible light-active nitrogen-doped TiO_2 has been prepared by dc-reactive magnetron sputtering using Ti target in an Ar + O_2/N gas mixture. The preparation of highly crystallized anatase TiO_xN_y, thin films with various nitrogen concentrations allowed us to identify the optimum nitrogen flow ratio for the photocatalytic oxidation (PCO) of 2-propanol. At higher nitrogen flow rate, nitrogen is found to be difficult to substitute for oxygen having been predicted to contribute the band gap narrowing, giving rise to undesired deep level defects. In addition, Raman spectroscopy and X-ray diffraction (XRD) studies revealed that highly crystallized anatase growth of nitrogen-doped TiO_xN_y, thin films are difficult at higher nitrogen flow rate. The optical band gap was found to be lower for the films deposited at 2 seem of nitrogen flow rate. The PCO of 2-propanol was studied as a function of nitrogen flow rate using in situ FTIR spectroscopy. The PCO of 2-propanol found to proceed along two routes: one was through the chemisorbed species, 2-propoxide to form the CO_2 directly; the other was through conversion of 2-propanol to acetone, followed by formation of formate species, and finally CO_2.
机译:可见光活性氮掺杂的TiO_2是通过在Ar + O_2 / N气体混合物中使用Ti靶通过直流反应磁控溅射制备的。制备具有各种氮浓度的高度结晶的锐钛矿型TiO_xN_y薄膜使我们能够确定2-丙醇的光催化氧化(PCO)的最佳氮流量比。在较高的氮气流速下,发现氮难以替代氧,据预测氮会导致带隙变窄,从而导致不良的深能级缺陷。另外,拉曼光谱法和X射线衍射(XRD)研究表明,氮掺杂的TiO_xN_y薄膜的高度结晶的锐钛矿生长难以在更高的氮气流速下进行。发现以2sccm的氮气流速沉积的膜的光学带隙较低。使用原位FTIR光谱研究了2-丙醇的PCO与氮气流速的关系。发现2-丙醇的PCO沿两种途径进行:一种是通过化学吸附物质,2-丙氧基直接形成CO_2。另一种是通过将2-丙醇转化为丙酮,然后形成甲酸盐,最后形成CO_2。

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