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具有高稳定性和加速有机污染物光降解性能的Z型等离子体AgCrO-AgMoO异质结纳米光催化剂的棒上土豆状结构

Potato-on-rod like of Z-scheme plasmon AgCrO-AgMoO heterojunction nanophotocatalyst with high stability and accelerated photo-degradation evolution of organic contaminants.

作者信息

Yousefi Fatemeh, Haghighi Mohammad, Shabani Maryam

机构信息

Chemical Engineering Faculty, Sahand University of Technology, P.O.Box 51335-1996, Sahand New Town, Tabriz, Iran; Reactor and Catalysis Research Center (RCRC), Sahand University of Technology, P.O.Box 51335-1996, Sahand New Town, Tabriz, Iran.

Chemical Engineering Faculty, Sahand University of Technology, P.O.Box 51335-1996, Sahand New Town, Tabriz, Iran; Reactor and Catalysis Research Center (RCRC), Sahand University of Technology, P.O.Box 51335-1996, Sahand New Town, Tabriz, Iran.

出版信息

Environ Res. 2023 Nov 1;236(Pt 2):116853. doi: 10.1016/j.envres.2023.116853. Epub 2023 Aug 9.

Abstract

The shocking increase of resistant dye pollutants in the environment and their harmful effects has become a potential threat to the ecosystem. In the current work, the novel and highly efficient potato-on-rod-like Z-scheme plasmon AgCrO-AgMoO heterojunction nano-photocatalyst was synthesized by precipitation method to photodegrade different organic dyes under artificial sunlight. The required analysises were carried out to characterize nanophotocatalysts. FESEM and TEM results showed the placement way of potato-like AgCrO between/on rod-like AgMoO which was leading to suitable structure and surface morphology. Besides, the morphology observations released the meso-/macroporous potato-on-rod like architecture self-assembled by nanoparticles. DRS analysis also confirmed two band gap energies of 2.55 and 1.72 eV in AgCrO-AgMoO (3:1) resulting from forming a heterojunction structure and the plasmon Ag. AgCrO-AgMoO (3:1) nanophotocatalyst exhibited the most remarkable activity in the photodegradation of 10 mg/L 2-naphthol orange (97.8%), 10 mg/L rhodamine B (99.7%), 10 mg/L crystal violet (98.9%), and 10 mg/L methyl orange (56.1%) with a catalyst dosage of 0.1 gr for about 90 min. The appropriate energy band gap, the formation of the heterostructure, the presence of meso (0.0038 cm/g) and macro (0.0044 cm/g) holes, and pore diameter at about 17.2 nm based on BET-BJH analysis that facilitated the penetration of pollutant molecules, increased pollutant adsorption and demonstrated stunning capability of efficient light harvesting, the reason was electron-hole pairs recombination rate reduction. Moreover, the fabricated samples showed tremendous catalyst constancy and reusability even after the fourth run. Results have shown the remarkable photocatalytic activity under visible light and provide an environment-friendly and green strategy to overcome the challenges of organic pollutants present in aqueous solutions.

摘要

环境中抗性染料污染物的惊人增加及其有害影响已成为对生态系统的潜在威胁。在当前工作中,通过沉淀法合成了新型高效的棒上马铃薯状Z型等离子体AgCrO-AgMoO异质结纳米光催化剂,以在人工阳光下光降解不同的有机染料。进行了所需的分析以表征纳米光催化剂。场发射扫描电子显微镜(FESEM)和透射电子显微镜(TEM)结果表明,马铃薯状AgCrO在棒状AgMoO之间/之上的放置方式导致了合适的结构和表面形态。此外,形态观察揭示了由纳米颗粒自组装而成的介孔/大孔棒上马铃薯状结构。漫反射光谱(DRS)分析还证实,由于形成异质结结构和等离子体Ag,AgCrO-AgMoO(3:1)中有两个带隙能量,分别为2.55和1.72 eV。AgCrO-AgMoO(3:1)纳米光催化剂在光降解10 mg/L的2-萘酚橙(97.8%)、10 mg/L的罗丹明B(99.7%)、10 mg/L的结晶紫(98.9%)和10 mg/L的甲基橙(56.1%)时表现出最显著的活性,催化剂用量为0.1 g,反应约90分钟。基于BET-BJH分析,合适的能带隙、异质结构的形成、介孔(0.0038 cm/g)和大孔(0.0044 cm/g)的存在以及约17.2 nm的孔径促进了污染物分子的渗透,增加了污染物吸附,并显示出惊人的高效光捕获能力,原因是电子-空穴对复合率降低。此外,即使在第四次运行后,制备的样品仍显示出巨大的催化剂稳定性和可重复使用性。结果表明该催化剂在可见光下具有显著的光催化活性,并为克服水溶液中有机污染物的挑战提供了一种环境友好的绿色策略。

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