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首页> 外文期刊>Journal of Hazardous Materials >Phase control synthesis of α,β and α/β Bi_2O_3 hetero-junction with enhanced and synergistic photocatalytic activity on degradation of toxic dye, Rhodamine-B under natural sunlight
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Phase control synthesis of α,β and α/β Bi_2O_3 hetero-junction with enhanced and synergistic photocatalytic activity on degradation of toxic dye, Rhodamine-B under natural sunlight

机译:在自然阳光下具有增强和协同光催化活性的有毒染料若丹明-B降解的相控合成α,β和α/βBi_2O_3异质结

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摘要

Nano particles of a few alpha/beta Bi2O3 hetero-junctions of various compositions synthesized by one-pot hydro thermal method, exhibit exceptional and synergistic photo-catalytic activity for the degradation of Rhodamine-B in aqueous solution under natural sunlight. Pure alpha and pure beta Bi2O3 are also synthesized by control post heating of synthesized hetero-junction. The nano-materials were characterized by diffraction (XRD), microscopic and spectroscopic techniques. The XRD reveals alpha-beta phase hetero junctions of Bi2O3 are made of alpha-Bi2O3 and beta-Bi2O3 with average dimensions within 13-113 and 5-71 nm respectively and having band gap range of 2.4-2.9 eV. The spectrophotometrically determined % degradation of the dye and associated rate constant on the best hetero-junction are increased by 4.5(/12.1) and 3.3(/1.2) times than these on pure alpha (/beta). The effects of operational parameters and trapping agents have been analyzed. The maximum removal of the dye was achieved up to 99.6% in 3 h using 0.5 g/L photo-catalyst at pH 3. The reusability test shows that the photo-catalytic activity is retained excellently due to change in chemical nature of the catalyst from alpha -Bi2O3 to beta-Bi2O3, Bi2O2CO3 and BiOCl. A suitable mechanism is proposed.
机译:通过一锅水热法合成的各种组成的一些α/βBi2O3异质结的纳米粒子,在自然阳光下,对水溶液中的若丹明B的降解表现出优异的协同光催化活性。也可以通过控制合成异质结的后加热来合成纯α和纯βBi2O3。通过衍射(XRD),显微和光谱技术表征了纳米材料。 XRD显示Bi 2 O 3的α-β相异质结由α-Bi2 O 3和β-Bi2 O 3制成,平均尺寸分​​别在13-113和5-71nm之间,并且带隙范围为2.4-2.9eV。分光光度法测定的染料降解百分数和最佳异质结上的相关速率常数比纯α(/β)分别提高了4.5(/12.1)和3.3(/1.2)倍。分析了操作参数和捕集剂的影响。使用pH值为3的0.5 g / L光催化剂,在3小时内染料的最大去除率达到了99.6%。可重复使用性测试表明,由于催化剂化学性质的改变,光催化活性得到了极好的保留。 α-Bi2O3到β-Bi2O3,Bi2O2CO3和BiOCl。提出了合适的机制。

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