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Sonocatalytic decolorization of methylene blue from aqueous media by La:ZnO/GO nanocomposites

机译:由La:ZnO / Go NaNoChosites的亚甲基蓝色亚甲基蓝色催化脱色

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The collaboration of graphene oxide and a rare earth element dopant has a significant effect on the catalytic performance of zinc oxide nanoparticles (ZnO). For this purpose, lanthanum-doped zinc oxide/graphene oxide (La:ZnO/GO) nanocomposites were produced. The La:ZnO/GO composites developed using various quantities of La3+ (3, 6 and 9 at.%) were used for methylene blue (MB) decomposition in the presence of ultrasound. SEM images of nanocomposites showed that the growth pattern of ZnO nanoparticles on the surface of graphene oxide changed, which can be related to lanthanum addition on the structure. In fact, by adding lanthanum, the structure of ZnO nanosheets that were aggregated in the flower form was converted into flower-like nanorods. TEM images clearly displayed La:ZnO/GO nanorods. The presence of lanthanum was confirmed by EDS analysis. La:ZnO(3 at.%)/GO nanocomposite, exhibited the highest sonocatalytic activity (93% after 80min) and demonstrated good stability in optimized conditions (catalyst dosage 0.1g, initial dye concentration 10mg/L and irradiation time 80min), which was checked out using response surface methodology from Design of Experiment software. After using a radical hydroxyl, superoxide and hole quencher results confirmed that the generated holes in the valence band of ZnO and superoxide radicals are major species for the MB oxidation process. The results demonstrated that the mineralization percentage of MB was approximately 93% of total organic carbon removal under ultrasound.
机译:石墨烯和稀土元素掺杂剂的合作对氧化锌纳米颗粒(ZnO)的催化性能具有显着影响。为此目的,制备镧掺杂氧化锌/石墨烯(LA:ZnO / Go)纳米复合材料。使用各种量的La3 +(3,6和9.%)开发的La:ZnO / Go复合材料用于超声中的亚甲基蓝(Mb)分解。纳米复合材料的SEM图像显示,ZnO纳米颗粒在石墨烯表面上的生长模式改变,其与结构上的镧添加有关。实际上,通过添加镧,将在花卉形式中聚集的ZnO纳米片的结构转化为花状纳米棒。 TEM图像清晰显示LA:ZnO / Go Nanorods。通过EDS分析证实了镧的存在。洛杉矶:ZnO(3 AT。%)/去纳米复合材料,表现出最高的儿童催化活性(80mIN后93%),并在优化条件下证明了良好的稳定性(催化剂剂量0.1g,初始染料浓度10mg / L和照射时间80min)使用实验软件设计的响应面方法检查了。在使用自由基羟基之后,超氧化物和空穴猝灭剂结果证实,ZnO和超氧化物自由基的价带中产生的孔是MB氧化过程的主要物种。结果表明,Mb的矿化百分比约占超声波总有机碳除去的93%。

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