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在可见光照射下,Z 型异质结 BiVO/Cu/g-CN 的光催化降解活性增强。

Enhanced photocatalytic degradation activity of Z-scheme heterojunction BiVO /Cu/g-C N under visible light irradiation.

机构信息

Key Laboratory of Subsurface Hydrology and Ecological Effects in Arid Region, Ministry of Education, Chang'an University, Xi'an, China.

School of Water and Environment, Chang'an University, Xi'an, China.

出版信息

Water Environ Res. 2021 Oct;93(10):2010-2024. doi: 10.1002/wer.1572. Epub 2021 May 1.

Abstract

A novel BiVO /Cu/g-C N heterostructure photocatalyst was synthesized by thermal condensation, hydrothermal, and in situ precipitation method. The microscopic morphology and chemical composition of the synthesized samples were analyzed by XRD, SEM, FT-IR, XPS, and other characterizations. BiVO /Cu/g-C N (BiVO /Cu:g-C N mass ratio was 1:1) photocatalyst had the optimal photocatalytic degradation activity for tetracycline (TC) wastewater under visible light irradiation (120 min, 74.8%). The introduction of Cu and Z-scheme heterojunction was further confirmed by UV-vis, PL, EIS, and capture mechanism analysis, which effectively accelerated the separation and transfer rate of photogenerated electron holes and enhanced the strong oxidation of h and •O active species. BiVO /Cu/g-C N heterojunction photocatalytic material has potential application value in the removal of refractory pollutants in wastewater. PRACTITIONER POINTS: A novel Z-scheme BiVO /Cu/g-C N photocatalyst with excellent photocatalytic activities and stability was prepared to treat tetracycline (TC) wastewater. 1:1 CBCN (BiVO /Cu:g-C N mass ratio was 1:1) photocatalyst exhibited the highest photocatalytic performance for TC wastewater. The Z-scheme heterojunction and Cu act as the interfacial charge transfer medium accelerated the transfer and separation of carriers.

摘要

一种新型的 BiVO /Cu/g-C 3 N 异质结构光催化剂通过热缩聚、水热和原位沉淀法合成。通过 XRD、SEM、FT-IR、XPS 等表征分析了合成样品的微观形貌和化学成分。在可见光照射下(120 min,74.8%),BiVO /Cu/g-C 3 N(BiVO /Cu:g-C 3 N 质量比为 1:1)光催化剂对四环素(TC)废水具有最佳的光催化降解活性。通过 UV-vis、PL、EIS 和捕获机制分析进一步证实了 Cu 的引入和 Z 型异质结的形成,这有效地加速了光生电子空穴的分离和转移速率,并增强了 h 和 •O 活性物质的强氧化作用。BiVO /Cu/g-C 3 N 异质结光催化材料在去除废水中难降解污染物方面具有潜在的应用价值。

要点

制备了一种具有优异光催化活性和稳定性的新型 Z 型 BiVO /Cu/g-C 3 N 光催化剂,用于处理四环素(TC)废水。1:1 CBCN(BiVO /Cu:g-C 3 N 质量比为 1:1)光催化剂对 TC 废水表现出最高的光催化性能。Z 型异质结和 Cu 作为界面电荷转移介质,加速了载流子的转移和分离。

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