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Structural characterization of Th-doped TiO2 photocatalyst and its extension of response to solar light for photocatalytic oxidation of oryzalin pesticide: a comparative study

机译:掺杂Th的TiO2光催化剂的结构表征及其对米色林农药光催化氧化的太阳光响应扩展:比较研究

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The degradation efficiency of Th-doped TiO2 / TiO2 photocatalysts were investigated under UV and solar light illumination. The model compound chosen for the study was Oryzalin (OZ). Doping of inner transition metal ion Th was intended to modify the electronic properties of TiO2. The Th-doped TiO2 were synthesized by incorporating 0.02, 0.04, 0.06, and 0.1 atom percentage of Th into the TiO2 lattice by solid-state reaction. The stochiometry of the prepared samples is Ti_(1-x)Th_xO2, where 'x' is the percentage of Th. The samples were characterized by UV-Visible absorption, UV-Visible -Diffused reflectance spectra, Scanning Electron Microscopy (SEM), Energy Dispersive X-ray Analysis (EDX) and X-ray Diffraction (XRD). The pore size and surface area of these samples were studied by Brunauer, Emmett and Teller (BET) adsorption method. It was found that metal ion doping at various percentage compositions enables a large shift in the absorption band of the TiO2 towards visible light region. This is due to the formation of various mid band gaps at 2.84 eV, 2.804 eV, 2.66 eV, and 2.55 eV. The extent of degradation of the pesticide was followed by UV-Visible spectroscopy and GC-MS methods. Based on the spectral analysis, the probable degradation reaction mechanism for OZ is proposed. These results indicate that Th-doped TiO2 with the modified electronic properties is a good catalyst under solar light irradiation. But these particles show marginal variation in rates under UV-illumination. All the photodegradation reactions follow the first order kinetics.
机译:研究了Th掺杂的TiO2 / TiO2光催化剂在紫外光和太阳光下的降解效率。选择用于研究的模型化合物是Oryzalin(OZ)。内部过渡金属离子Th的掺杂旨在改变TiO2的电子性能。通过固相反应将0.02、0.04、0.06和0.1原子百分比的Th掺入TiO2晶格中来合成Th掺杂的TiO2。所制备样品的化学计量为Ti_(1-x)Th_xO2,其中“ x”为Th的百分比。通过紫外可见吸收,紫外可见扩散反射光谱,扫描电子显微镜(SEM),能量色散X射线分析(EDX)和X射线衍射(XRD)表征样品。通过Brunauer,Emmett和Teller(BET)吸附法研究了这些样品的孔径和表面积。已经发现,以不同百分比组成的金属离子掺杂能够使TiO2的吸收带向可见光区域大范围移动。这是由于在2.84 eV,2.804 eV,2.66 eV和2.55 eV处形成了各种中带隙。通过紫外可见光谱法和GC-MS方法追踪农药的降解程度。在光谱分析的基础上,提出了OZ可能的降解反应机理。这些结果表明,在太阳光照射下,具有改性的电子性能的掺Th TiO2是良好的催化剂。但是这些颗粒在紫外线照射下显示出速率的边际变化。所有的光降解反应都遵循一级动力学。

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