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Synthesis of flower-like AgI/BiOCOOH p-n heterojunctions with enhanced visible-light photocatalytic performance for the removal of toxic pollutants

机译:具有增强的可见光光催化性能的花状AgI / BiOCOOH p-n异质结的合成,用于去除有毒污染物

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In this study, flower-like AgI/BiOCOOH heterojunctions were constructed through a two-step procedure involving the solvothermal synthesis of BiOCOOH microflowers followed by AgI modification using a precipitation method. These novel photocatalysts were systematically examined by XRD, UV?vis DRS, SEM, TEM, EDS, and PL spectroscopy techniques. The AgI/BiOCOOH heterojunction were studied as a decent photocatalyst for the removal of the industrial dye (rhodamine B, and methyl blue) and antibiotic (tetracycline) under visible light. The AgI/BiOCOOH heterojunctions are much more active than bare BiOCOOH, and AgI, which could be ascribed to the improved separation of charge carriers, resulting from the formation of p-n heterojunction between two constituents. The holes and ?O2– were detected as the main active species responsible for the pollutant degradation. The results showed that a highly efficient visible-light-driven photocatalytic system was developed for the decomposition of toxic pollutants.
机译:在这项研究中,花样的AgI / BiOCOOH异质结是通过两步过程构建的,该过程涉及溶剂热合成BiOCOOH小花,然后使用沉淀法进行AgI修饰。通过XRD,UV-DRS,SEM,TEM,EDS和PL光谱技术对这些新型光催化剂进行了系统的研究。研究了AgI / BiOCOOH异质结作为一种体面光催化剂,用于在可见光下去除工业染料(若丹明B和甲基蓝)和抗生素(四环素)。 AgI / BiOCOOH异质结的活性比裸露的BiOCOOH和AgI高得多,这可以归因于两种成分之间形成p-n异质结而改善了电荷载流子的分离。空穴和?O2?被认为是造成污染物降解的主要活性物质。结果表明,开发了一种高效的可见光驱动光催化系统,用于分解有毒污染物。

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