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Influence of Metal Oxide Particles on Bandgap of 1D Photocatalysts Based on SrTiO

机译:金属氧化物粒子对基于SRTIO的1D光催化剂带隙的影响

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摘要

This paper deals with the study of the optical properties of one-dimensional SrTiO3/PAN-based photocatalysts with the addition of metal oxide particles and the determination of their bandgaps. One-dimensional photocatalysts were obtained by the electrospinning method. Particles of metals such as iron, chromium, and copper were used as additives that are capable of improving the fibers’ photocatalytic properties based on SrTiO3/PAN. The optimal ratios of the solutions for the electrospinning of fibers based on SrTiO3/PAN with the addition of metal oxide particles were determined. The transmission and reflection of composite photocatalysts with metal oxide particles were measured in a wide range of spectra, from the ultraviolet region (185 nm) to near-infrared radiation (3600 nm), to determine the values of their bandgaps. Thus, the introduction of metal oxide particles resulted in a decrease in the bandgaps of the obtained composite photocatalysts compared to the initial SrTiO3/PAN (3.57 eV), with the following values: −3.11 eV for SrTiO3/PAN/Fe2O3, −2.84 eV for SrTiO3/PAN/CuO, and −2.89 eV for SrTiO3/PAN/Cr2O3. The obtained composite photocatalysts were tested for the production of hydrogen by the splitting of water–methanol mixtures under UV irradiation, and the following rates of hydrogen evolution were determined: 344.67 µmol h−1 g−1 for SrTiO3/PAN/Fe2O3, 398.93 µmol h−1 g−1 for SrTiO3/PAN/Cr2O3, and 420.82 µmol h−1 g−1 for SrTiO3/PAN/CuO.
机译:本文涉及通过加入金属氧化物颗粒和它们的带隙的光催化剂的一维SRTIO3 /泛催化剂的光学性能研究。通过静电纺丝方法获得一维光催化剂。金属颗粒如铁,铬和铜,用作基于Srtio3 /锅的纤维的光催化性能的添加剂。确定基于SRTIO3 /锅加入金属氧化物颗粒的纤维静电纺织溶液的溶液的最佳比率。用金属氧化物颗粒的复合光催化剂的透射和反射在宽范围的光谱中测量,从紫外线区域(185nm)到近红外辐射(3600nm),以确定其带隙的值。因此,与初始SRTIO3 / PAN(3.57eV)相比,所获得的复合光催化剂的带隙的引入导致所得复合光催化剂的带隙的降低导致下列值:-3.11eV用于SRTIO3 / PAN / FE2O3,-2.84eV对于SRTIO3 / PAN / CUO,和-2.89eV用于SRTIO3 / PAN / CR2O3。通过UV辐射下的水 - 甲醇混合物分裂测试所得复合光催化剂,并测定下列氢化速率:344.67μmolH-1g-1,用于SrtiO3 / PAN / Fe2O3,398.93μmol H-1 G-1用于SRTIO3 / PAN / CR2O3,420.82μmolH-1 G-1用于SRTIO3 / PAN / CUO。

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