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三元g-CN/ZnO-W/M纳米复合材料集成异质结II作为环境应用高效光催化剂的合成研究。

Investigation on synthesis of ternary g-CN/ZnO-W/M nanocomposites integrated heterojunction II as efficient photocatalyst for environmental applications.

作者信息

Malik Misbah, Len Thomas, Luque Rafael, Osman Sameh M, Paone Emilia, Khan Muhammad Imran, Wattoo Muhammad Ahmad, Jamshaid Muhammad, Anum Aqsa, Rehman Aziz Ur

机构信息

Institute of Chemistry, The Islamia University, Bahawalpur, 63100, Pakistan.

Departamento de Química Orgánica, Instituto de Química Fina y Nanoquímica, Universidad de Córdoba, Campus de Rabanales, Edificio Marie Curie (C-3), CtraNnal IV-A, Km 396, E14014, Cordoba, Spain.

出版信息

Environ Res. 2023 Jan 15;217:114621. doi: 10.1016/j.envres.2022.114621. Epub 2022 Nov 5.

Abstract

The rapid industrialization of the world is disparagingly manipulating our environment and natural ecosystem. The researchers are taking keen interest to invent novel material as photocatalyst for non-degradable organic pollutants. Solar energy-driven practices employing semiconductors are a novel approach towards wastewater remediation. Here in, we successfully synthesized a vigorous photocatalysts comprising of g-CN and doped ZnO-W/M (M = Co, Ce, Yb, Sm) by co-precipitation followed by metals doping via calcination approach. The structural, morphological, and photocatalytic applications for organic pollutants of synthesized heterostructure nanocomposites were examined by XRD, FTIR, SEM, EDX and UV visible spectrophotometer. Diffraction peaks attributed to both g-CN and ZnO-W were detected in the XRD spectra. The FTIR spectra also inveterate the formation of g-CN/ZnO-W/M composites. The SEM images reveal an agglomerated morphology and EDS analysis also confirmed close contact between g-CN, ZnO-W and doped metals. The abridged energy band gap of g-CN/ZnO-W/M (M = Ce, Yb, Sm, Co) nanocomposites calculated via Tauc plot are 2.68, 2.88, 3.24 and 3.29 eV respectively. Narrowing of bandgap is considered an imperative triumph for the degradation of industrial effluents. The photocatalytic activity was performed against four different dyes and follows the trend Ce > Yb > Sm > Co. The recyclability tests were carried out for different dyes and no substantial catalytic activity loss was observed even after the fourth experimental run, which proves that reported ternary heterojunctions exhibit high mechanical stability and reusability.The species trapping experiment exposed that generated h are the principal active specie for dye photodegradation reactions. This work disseminates a novel photocatalyst for the removal of synthetic dyes.

摘要

世界的快速工业化正在对我们的环境和自然生态系统造成不利影响。研究人员对发明新型材料作为光催化剂来处理不可降解有机污染物有着浓厚兴趣。利用半导体的太阳能驱动方法是一种处理废水的新途径。在此,我们通过共沉淀法成功合成了一种由g-CN和掺杂的ZnO-W/M(M = Co、Ce、Yb、Sm)组成的活性光催化剂,随后通过煅烧法进行金属掺杂。通过XRD、FTIR、SEM、EDX和紫外可见分光光度计对合成的异质结构纳米复合材料的结构、形态和对有机污染物的光催化应用进行了研究。XRD光谱中检测到了归属于g-CN和ZnO-W的衍射峰。FTIR光谱也证实了g-CN/ZnO-W/M复合材料的形成。SEM图像显示出团聚形态,EDS分析也证实了g-CN、ZnO-W和掺杂金属之间的紧密接触。通过Tauc图计算得出的g-CN/ZnO-W/M(M = Ce、Yb、Sm、Co)纳米复合材料的简化能带隙分别为2.68、2.88、3.24和3.29 eV。能带隙变窄被认为是工业废水降解的一项重要成果。对四种不同染料进行了光催化活性测试,活性顺序为Ce > Yb > Sm > Co。对不同染料进行了可回收性测试,即使在第四次实验运行后也未观察到明显的催化活性损失,这证明所报道的三元异质结具有高机械稳定性和可重复使用性。物种捕获实验表明,产生的h是染料光降解反应的主要活性物种。这项工作展示了一种用于去除合成染料的新型光催化剂。

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