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Utilization of Carbon Nanospheres in Photocatalyst Production: From Composites to Highly Active Hollow Structures

机译:碳纳米球在光催化剂生产中的利用:从复合材料到高活性空心结构

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摘要

Titanium dioxide–carbon sphere (TiO2–CS) composites were constructed via using prefabricated carbon spheres as templates. By the removal of template from the TiO2–CS, TiO2 hollow structures (HS) were synthesized. The CS templates were prepared by the hydrothermal treatment of ordinary table sugar (sucrose). TiO2–HSs were obtained by removing CSs with calcination. Our own sensitized TiO2 was used for coating the CSs. The structure of the CSs, TiO2–CS composites, and TiO2–HSs were characterized by scanning electron microscopy (SEM), infrared spectroscopy (IR), X-ray diffraction (XRD), X-ray photoelectron spectroscopy (XPS), and diffuse reflectance spectroscopy (DRS). The effect of various synthesis parameters (purification method of CSs, precursor quantity, and applied furnace) on the morphology was investigated. The photocatalytic activity was investigated by phenol model pollutant degradation under visible light irradiation (λ > 400 nm). It was established that the composite samples possess lower crystallinity and photocatalytic activity compared to TiO2 hollow structures. Based on XPS measurements, the carbon content on the surface of the TiO2–HS exerts an adverse effect on the photocatalytic performance. The synthesis parameters were optimized and the TiO2–HS specimen having the best absolute and surface normalized photocatalytic efficiency was identified. The superior properties were explained in terms of its unique morphology and surface properties. The stability of this TiO2–HS was investigated via XRD and SEM measurements after three consecutive phenol degradation tests, and it was found to be highly stable as it entirely retained its crystal phase composition, morphology and photocatalytic activity.
机译:通过使用预制碳球作为模板来构造二氧化钛-碳球(TiO2-CS)复合材料。通过从TiO2-CS中去除模板,合成了TiO2中空结构(HS)。 CS模板是通过对普通食用糖(蔗糖)进行水热处理而制备的。 TiO2-HSs是通过煅烧除去CS来获得的。我们自己的敏化的TiO2用于涂覆CS。 CS,TiO2-CS复合材料和TiO2-HS的结构通过扫描电子显微镜(SEM),红外光谱(IR),X射线衍射(XRD),X射线光电子能谱(XPS)和扩散来表征反射光谱(DRS)。研究了各种合成参数(CS的纯化方法,前驱体数量和所用炉子)对形态的影响。通过可见光(λ> 400 nm)下苯酚模型污染物的降解研究光催化活性。已经确定,与TiO 2中空结构相比,该复合样品具有较低的结晶度和光催化活性。根据XPS测量,TiO2-HS表面的碳含量会对光催化性能产生不利影响。优化了合成参数,并确定了具有最佳绝对和表面归一化光催化效率的TiO2-HS标本。根据其独特的形态和表面特性来解释其优越的性能。在连续三个苯酚降解测试后,通过XRD和SEM测量研究了TiO2-HS的稳定性,并且由于它完全保留了其晶相组成,形态和光催化活性,因此具有很高的稳定性。

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