首页> 外文期刊>ACS Omega >Controlled Microwave-Assisted Synthesis of the 2D-BiOCl/2D-g-C3N4 Heterostructure for the Degradation of Amine-Based Pharmaceuticals under Solar Light Illumination
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Controlled Microwave-Assisted Synthesis of the 2D-BiOCl/2D-g-C3N4 Heterostructure for the Degradation of Amine-Based Pharmaceuticals under Solar Light Illumination

机译:受控的微波辅助合成2D-BiOCl / 2D-g-C3N4异质结构,用于在太阳光照射下降解胺类药物

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Designing efficient 2D-bismuth oxychloride (BiOCl)/2D-g-C3N4 heterojunction photocatalysts by the microwave-assisted method was studied in this work using different amounts of BiOCl plates coupled with g-C3N4 nanosheets. The effects of coupling the 2D structure of g-C3N4 with the 2D structure of BiOCl were systematically examined by scanning electron microscopy (SEM), energy-dispersive X-ray spectroscopy, X-ray diffraction, photoluminescence (PL), lifetime decay measurement, surface charges of the samples at various pH conditions, and UV–vis diffuse reflectance spectroscopy (UV–vis DRS). The prepared photocatalysts were used for the degradation of amine-based pharmaceuticals, and nizatidine was used as a model pollutant to evaluate the photocatalytic activity. The UV–vis DRS and other optical properties indicated the major effect of coupling of BiOCl with g-C3N4 into a 2D/2D structure. The results showed a narrowing in the band gap energy of the composite form, whereas the PL and lifetime analysis showed greater inhibition of the electron–hole recombination process and slightly longer charge carrier lifetime. Accordingly, the BiOCl/g-C3N4 composite samples exhibited an enhancement in the photocatalytic performance, specifically for the 10% BiOCl/g-C3N4 sample. Moreover, the zeta potential of this sample at different pH values was evaluated to determine the isoelectric point of the synthesized composite material. Consequently, the pH was adjusted to match the isoelectric point of the complex materials, which further enhanced the activity. Further degradation of pharmaceuticals was studied under solar light irradiation, and 96% degradation was achieved within 30 min.
机译:在这项工作中,研究了使用不同量的BiOCl板和g-C3N4纳米片,通过微波辅助方法设计高效的2D氯氧化铋(BiOCl)/ 2D-g-C3N4异质结光催化剂。通过扫描电子显微镜(SEM),能量色散X射线光谱,X射线衍射,光致发光(PL),寿命衰减测量,系统地检查了g-C3N4的2D结构与BiOCl的2D结构耦合的效果,样品在各种pH条件下的表面电荷,以及UV-vis漫反射光谱法(UV-vis DRS)。制备的光催化剂用于胺类药物的降解,尼扎替丁用作模型污染物评估其光催化活性。紫外可见DRS和其他光学性质表明BiOCl与g-C3N4偶联成2D / 2D结构的主要作用。结果表明,复合形式的带隙能变窄,而PL和寿命分析显示出对电子-空穴复合过程的更大抑制,电荷载流子的寿命稍长。因此,BiOC1 / g-C3N4复合样品表现出光催化性能的增强,特别是对于10%BiOC1 / g-C3N4样品。而且,评估了该样品在不同pH值下的ζ电位,以确定合成的复合材料的等电点。因此,调节pH以匹配复合材料的等电点,这进一步增强了活性。在阳光照射下研究了药物的进一步降解,并在30分钟内达到96%的降解。

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