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Preparation and Characterization of Nanocrystalline Fe/N Co-Doped Titania

机译:纳米晶Fe / N共掺杂二氧化钛的制备与表征

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Doping nitrogen in TiO_2 enhances photoresponse in visible light region while doping iron reduces the recombination of photo-induced electrons and holes. In this work, a simple procedure for preparing nitrogen and iron co-doped titanium dioxide nanocrystalline (Fe/N-TiO_2) by calcinating the mixture of Degussa P-25 TiO_2, zero-valent iron (ZVI), and NH_4Cl at the temperature of 400 deg C under airtight condition. Characterization of Fe/N-TiO_2 was investigated by ESCA, XRD, and UV/Vis spectroscopy. The results showed that ZVI was transformed to FeTiO_5 and Fe_2O_3 while the absorption wavelength of Fe/N-TiO_2 was shifted to the visible light region for maximum of 561 nm, indicating the band gap narrowing by incorporation of the nitrogen and ZVI to TiO_2.
机译:掺杂TiO_2中的氮会增强可见光区域的光响应,而掺杂铁会降低光致电子和空穴的复合。在这项工作中,一个简单的程序是通过在90℃的温度下煅烧Degussa P-25 TiO_2,零价铁(ZVI)和NH_4Cl的混合物来制备氮和铁共掺杂的二氧化钛纳米晶(Fe / N-TiO_2)。密闭条件下为400摄氏度。通过ESCA,XRD和UV / Vis光谱研究了Fe / N-TiO_2的表征。结果表明,ZVI转变为FeTiO_5和Fe_2O_3,而Fe / N-TiO_2的吸收波长移至可见光区域,最大吸收波长为561 nm,表明氮和ZVI掺入TiO_2导致带隙变窄。

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