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Preparation and visible-light photocatalytic activity of N-doped TiO2 by plasma-assisted sol-gel method

机译:等离子体辅助溶胶 - 凝胶法制备n掺杂TiO2的制备和可见光光催化活性

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摘要

N-doped TiO2 was synthesized by a facile so-gel method using urea as nitrogen resource. To seek the efficient N doping of TiO2 photocatalysts, non-thermal N-2 plasma was employed to treat N-doped TiO2 followed by calcination (N-TiO2 (NTP)) and compared with the conventional calcination (N-TiO2). The samples were evaluated under visible light irradiation for photocatalytic degradation of methyl orange (MO). To elucidate the plasma treatment effect, XRD, SEM, EDS, TEM, BET, UV-vis DRS, FT-IR and XPS techniques were used for catalyst characterization. N-TiO2 (NTP) possessed small particle size of 4.9 nm with better dispersion and narrow band gap of 1.6 eV. The visible-light photocatalytic activity of N-TiO2 (NTP) was much better than that of N-TiO2. And the photocatalytic degradation kinetics of the MO fitted with the Langmuir-Hinshelwood equation. The apparent reaction rate constant of N-TiO2 (NTP) was about 2.8 times as high as that of N-TiO2. The enhancement was ascribed to small particle size of N-doped TiO2 offering more surface active sites and high content of surface oxygen.
机译:通过使用尿素作为氮资源的容易的SO-GEL方法合成了N-掺杂的TiO 2。为了寻求TiO 2光催化剂的高效N掺杂,使用非热N-2等离子体来处理N掺杂的TiO 2,然后进行煅烧(N-TiO 2(NTP))并与常规煅烧(N-TiO 2)进行比较。在可见光照射下评价样品,用于光催化降解甲基橙(Mo)。为了阐明等离子体处理效果,使用XRD,SEM,EDS,TEM,BET,UV-Vis DRS,FT-IR和XPS技术用于催化剂表征。 N-TiO2(NTP)具有小粒径为4.9nm,具有更好的分散和1.6eV的窄带隙。 N-TiO2(NTP)的可见光光催化活性远优于N-TiO2。和Mo的光催化降解动力学配有Langmuir-Hinshelwood方程。 N-TiO 2(NTP)的表观反应速率常数与N-TiO 2高约2.8倍。增强归因于N掺杂TiO2的小粒径,提供更多的表面活性位点和高含量的表面氧。

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