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首页> 外文期刊>Ionics >Sol-gel preparation of metal and nonmetal-codoped TiO2-graphene nanophotocatalyst for photodegradation of MO under UV and visible-light irradiation
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Sol-gel preparation of metal and nonmetal-codoped TiO2-graphene nanophotocatalyst for photodegradation of MO under UV and visible-light irradiation

机译:溶胶 - 凝胶制备金属和非金属编号的TiO2-石墨烯纳米光催化剂,用于紫外线和可见光照射下的MO的光降解

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摘要

To improve the photocatalytic activity of TiO2 nanoparticles in the visible area, different metal/nonmetal co-doped TiO2 crystals (Cu, C, N, S/TiO2-x wt%) were grown on graphene (GR) by means of a sol-gel procedure using cysteine (Cys) (C3H6O2NS), Cu(NO3).3H2O, and titanium (IV) isopropoxide (Ti{OCH(CH3)(2)}(4)) as precursors. The products were used for degrading methyl orange (MO) in water. The qualities, surface morphology, band gap energy, and composition of the photocatalyst were evaluated through scanning electron microscopy (SEM), energy dispersive X-ray (EDX), X-ray diffraction (XRD), Fourier transform infrared spectroscopy (FT-IR), and UV-vis diffuse reflectance spectroscopy (UV-Vis DRS). Based on the XRD results, the samples x%Cu/1.5%Cys/TiO2-x wt% GR and x%Cu/1.5%Cys/TiO2 were found to be mainly composed of anatase and some rutile phases. The x%Cu/1.5%Cys/TiO2-x wt% GR nanocomposites revealed to have a red shift in its light absorption wavelength, reflecting the narrowing of the band gap, which was not the case with x%Cu/1.5%Cys/TiO2. The nanocomposite containing 0.5mol% Cu/1.5mol% Cys/TiO2-15wt% GR was found to be a very efficient photocatalyst for degrading MO under UV and visible light, which can be due to the presence of GR nanosheets and the resulting enhancement in the lifetime of the photogenerated electron-hole pairs, as well as the faster interfacial charge transfer rates.
机译:为了改善可见区域中TiO2纳米颗粒的光催化活性,通过溶胶在石墨烯(GR)上生长不同的金属/非金属共掺杂TiO 2晶体(Cu,C,N,S / TiO 2-x Wt%)使用半胱氨酸(Cys)(C3H6O2NS),Cu(NO 3).3H 2 O和钛(IV)异丙氧化物(Ti {Och(Ch 3)(2)}(4))作为前体的凝胶程序作为前体。产品用于降解水中的甲基橙(Mo)。通过扫描电子显微镜(SEM),能量分散X射线(EDX),X射线衍射(XRD),傅里叶变换红外光谱(FT-IR)评估光催化剂的质量,表面形态,带隙能量和组成。 )和UV-VI扩散反射光谱(UV-VIS DRS)。基于XRD结果,发现样品X%Cu / 1.5%Cys / TiO2-X WT%GR和X%Cu / 1.5%Cys / TiO2主要由锐钛矿和一些金红石相组成。 X%Cu / 1.5%Cys / TiO 2-x WT%GR纳米复合材料显示在其光吸收波长中具有红色变化,反映了带隙的变窄,X%Cu / 1.5%Cys / TiO2。发现含有0.5mol%Cu / 1.5mol%Cys / TiO2-15wt%GR的纳米复合材料是在UV和可见光下降解MO的非常有效的光催化剂,这可能是由于GR纳米片的存在和所得到的增强光发化电子 - 空穴对的寿命以及更快的界面电荷传递速率。

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