首页> 外文期刊>Solar Energy >Sono-solvothermal fabrication of ball-flowerlike Bi_2O_7Sn_2-Bi_7O_9I_3 nanophotocatalyst with efficient solar-light-driven activity for degradation of antibiotic tetracycline
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Sono-solvothermal fabrication of ball-flowerlike Bi_2O_7Sn_2-Bi_7O_9I_3 nanophotocatalyst with efficient solar-light-driven activity for degradation of antibiotic tetracycline

机译:声溶剂热法制备球形花状Bi_2O_7Sn_2-Bi_7O_9I_3纳米光催化剂,具有高效的太阳光驱动活性,可降解四环素

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A novel Bi2O7Sn2-Bi7O9I3 nano-heterostructure photocatalyst with the different weighted percentages and as I-type heterojunction, which acts as pseudo-type II heterojunction, were successfully synthesized using sonosolvothermal manner for the first time. The coupled nanophotocatalysts with various weighted contents of Bi2O7Sn2 and Bi7O9I3 were characterized with XRD, FESEM, EDX, DRS, BET-BJH and pH(pzc) analyses. Meanwhile, the photocatalytic activity of various nanocomposites was evaluated in the remediation of the antibiotic tetracycline after 90 min irradiation. Results depicted that the ball-flowerlike Bi2O7Sn2(60)-Bi7O9I3(40) nanophotocatalyst, as a mesoporous structure and the type I-heterostructure which appears as an efficient solar-light driven pseudo-type II heterojunction, represented the best photocatalytic efficiency. This is addressed by the suitable absorption of light range, high separation of charge carriers and its large surface area which provide more active sites for absorption of tetracycline molecules. Furthermore, to elucidate the how the influence of various parameters on the photodegradation efficiency, the different experiments were conducted over Bi2O7Sn2(60)-Bi7O9I3(40). The high activity was obtained in the medium with pH = 6, catalyst loading = 1 g/L and tetracycline concentration = 35 mg/L. Moreover, the capable of reusability and reaction mechanism of improved photodegradation on mentioned photocatalyst were investigated.
机译:首次以声溶剂热方式成功合成了一种新型的Bi2O7Sn2-Bi7O9I3纳米异质结构光催化剂,该催化剂具有不同的重量百分比和作为I型异质结的I型异质结。通过XRD,FESEM,EDX,DRS,BET-BJH和pH(pzc)分析表征了具有不同重量比的Bi2O7Sn2和Bi7O9I3的偶联纳米光催化剂。同时,在照射90分钟后,在抗生素四环素的修复中评价了各种纳米复合物的光催化活性。结果表明,球形花状的Bi2O7Sn2(60)-Bi7O9I3(40)纳米光催化剂以中孔结构和I型-异质结构(表现为有效的太阳光驱动的伪II型异质结)表示最佳的光催化效率。这可以通过适当吸收光范围,电荷载流子的高度分离及其较大的表面积来解决,这为四环素分子的吸收提供了更多的活性位点。此外,为了阐明各种参数对光降解效率的影响,在Bi2O7Sn2(60)-Bi7O9I3(40)上进行了不同的实验。在pH = 6的介质中获得高活性,催化剂负载量= 1 g / L,四环素浓度= 35 mg / L。此外,研究了在上述光催化剂上可重复使用的能力和改善光降解的反应机理。

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