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Influence of the preparation method and ZnO/(ZnO + TiO2) weight ratio on the physicochemical and photocatalytic properties of ZnO-TiO2 nanomaterials

机译:制备方法和ZnO /(ZnO + TiO2)重量比对ZnO-TiO2纳米材料的物理化学和光催化性能的影响

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In this work, ZnO-TiO2 nanomaterials with various ZnO/(ZnO+ TiO2) weight ratios (0.1-0.9) were synthesized by using sol-gel and precipitation methods The influence of the ZnO weight ratio (R) and the preparation method on the structural, optical, morphological and photocatalytic properties of the prepared nanomaterials has been studied. The obtained physicochemical characterization results indicated that the crystalline structure, the morphological and the optical properties of the ZnO-TiO2 nanomaterials are strongly influenced by the preparation method as well as the ZnO weight ratio. The results of the photocatalytic degradation of Methyl Orange (MO) in the presence of the synthesized photocatalysts and UV-A light irradiation showed the existence of two domains of ZnO weight ratio. The first is between 0.2 and 0.5 in which the ZnO-TiO2 nanomaterials prepared by sol-gel method exhibited the lowest MO conversion values in comparison with those prepared by precipitation method. These low MO conversion values were due to the intervention of a combination of various parameters that are the particles' agglomeration, the poor crystallinity and the high E-g values. The second corresponds to R = 0.67 in which the sol-gel method leads to the fabrication of ZnO-TiO2 materials with better photocatalytic efficiencies. The kinetic study showed that the Zn(Pr)-Ti-0.1 sample exhibited the best final MO conversion (99.5%) with the highest apparent rate constant value (0.01763 mn(-1)).
机译:在这项工作中,通过使用溶胶 - 凝胶和沉淀方法合成具有各种ZnO /(ZnO + TiO2)重量比(0.1-0.9)的ZnO-TiO2纳米材料,并沉淀方法ZnO重量比(R)和制备方法对结构的影响研究了制备的纳米材料的光学,形态学和光催化性质。所获得的物理化学表征结果表明,ZnO-TiO2纳米材料的结晶结构,形态学和光学性质受到制备方法以及ZnO重量比的强烈影响。在合成的光催化剂和UV-A光照射的存在下,甲基橙(Mo)的光催化降解结果表明,ZnO重量比的两个结构域的存在。第一在0.2和0.5之间,其中溶胶 - 凝胶法制备的ZnO-TiO2纳米材料表现出最低的Mo转化值与通过沉淀法制备的那些。这些低Mo转化值是由于各种参数组合的介入,这些参数是颗粒的聚集,差的结晶度和高E-G值。第二个对应于R& = 0.67,其中溶胶 - 凝胶法导致ZnO-TiO2材料的制造具有更好的光催化效率。动力学研究表明,Zn(PR)-Ti-0.1样品表现出最佳最终的MO转化(99.5%),具有最高的表观速率恒定值(0.01763mN(-1))。

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