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Construction of SnNb2O6/MgIn2S4 heterojunction photocatalysts with enhanced visible-light-driven activity for tetracycline hydrochloride degradation and Cr() reduction

机译:SNNB2O6/MGIN2S4杂结光催化剂的构建具有增强的可见光驱动活性,用于四环素盐酸盐降解和CR()还原

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摘要

SnNb2O6/MgIn2S4(SNO/MIS) heterojunction photocatalytic materials were fabricated via a handy in situ growth method. Under the illumination of visible light, photocatalytic degradation of tetracycline hydrochloride (TC) and photocatalytic reduction of potassium dichromate (Cr(vi)) were used to investigate the photocatalytic performance of as-synthesized materials. The results of photocatalytic experiments showed that the prepared SNO/MIS composites had better photocatalytic performance compared with the pure samples. The apparent rate constant of TC degradation for the best sample SNO/MIS-2 was 30.3 and 3.4 times that of SNO and MIS. The apparent rate constant of Cr(vi) reduction is 498.6 and 2.5 times that of SNO and MIS. The results of cycle experiments demonstrated that the SNO/MIS-2 composite had excellent stability. The improvement of photocatalytic activity and stability was chiefly ascribed to the heterogeneous junction structure formed by the close contact between SNO and MIS, which can effectively promote carrier separation and inhibit the photocorrosion of MIS. This work provides positive guiding significance for the design and preparation of other photocatalysts for treating water pollution efficiently.
机译:SNNB2O6/MGIN2S4(SNO/MIS)杂结光催化材料是通过方便的原位生长法制造的。在可见光的照明下,使用四环素盐酸盐(TC)的光催化降解和二分氧化钾(CR(VI))的光催化还原来研究同一材料的光催化性能。光催化实验的结果表明,与纯样品相比,制备的SNO/MIS复合材料具有更好的光催化性能。最佳样品SNO/MIS-2的TC降解的明显速率常数是SNO和MIS的30.3和3.4倍。 CR(VI)降低的表观速率常数为498.6,是SNO和MIS的2.5倍。循环实验的结果表明,SNO/MIS-2复合材料具有出色的稳定性。光催化活性和稳定性的改善主要归因于SNO和MIS之间的密切接触形成的异质连接结构,这可以有效地促进载体分离并抑制MIS的光腐蚀。这项工作为其他光催化剂的设计和制备提供了积极的指导意义,以有效治疗水污染。

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