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Preparation of BiOI microspheres in 2-propanol/ethylene glycol by microwave method with high visible-light photocatalytic activity

机译:高可见光光催化活性的微波法制备2-丙醇/乙二醇中BioI微球的制备

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BiOI microspheres were synthesized by using mild conditions under microwave irradiation and applying short reaction times. The effect of the reaction medium in the final morphology of BiOI was revised modifying the relative concentrations of 2-propanol and ethylene glycol (EG) used as solvents. The as-prepared samples were characterized by X-ray powder diffraction, scanning electron microscopy, diffuse reflectance spectroscopy, N-2 adsorption-desorption isotherms and photoluminescence measurements. The photocatalytic activity of BiOI was evaluated in the oxidation reaction of nitric oxide (NO) under visible-light irradiation. In particular, the samples with morphology of 3D flower-like microspheres prepared with EG showed the highest activity for NO removal (83%), maintaining its performance after several photocatalytic cycles. Besides the morphology of BiOI samples, the high photocatalytic activity was associated with the large surface area and the low rate of charge recombination observed in samples prepared with EG. The use of scavenger agents allowed to determine the predominant participation of holes (h(+)), electrons (e(-)) and superoxide ion (O-2(-)) in the reaction mechanism of the NO oxidation.
机译:通过在微波辐射下使用温和条件合成生物微球,并施加短反应时间。反应介质在生物的最终形态中的影响修正了改变用作溶剂的2-丙醇和乙二醇(例如)的相对浓度。通过X射线粉末衍射,扫描电子显微镜,漫射反射光谱,N-2吸附 - 解吸等温线和光致发光测量的制备样品。在可见光照射下,在一氧化氮(NO)的氧化反应中评价生物催化活性。特别地,具有用于除去的最高活性的3D花样微球的样品,用于除去(83%),在几个光催化循环后保持其性能。除了生物化样品的形态之外,高光催化活性与大的表面积相关,以及在用例如具有例如具有EG制备的样品中观察到的样品中观察到的低电荷重组速率。使用清除剂可以确定孔的主要参与(H(+)),电子(E( - ))和超氧化物离子(O-2( - ))的无氧化机理中的反应机理。

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