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首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Visible-light-responsive graphene-functionalized Bi-bridge Z-scheme black BiOCl/Bi2O3 heterojunction with oxygen vacancy and multiple charge transfer channels for efficient photocatalytic degradation of 2-nitrophenol and industrial wastewater treatment
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Visible-light-responsive graphene-functionalized Bi-bridge Z-scheme black BiOCl/Bi2O3 heterojunction with oxygen vacancy and multiple charge transfer channels for efficient photocatalytic degradation of 2-nitrophenol and industrial wastewater treatment

机译:可见光响应石墨烯 - 官能化双桥Z-Scheme Blib BioCl / Bi2O3异质结具有氧空位和多电荷转移通道,用于高效光催化降解2-硝基苯酚和工业废水处理

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摘要

Although Bi-based compounds are effective photocatalysts for degrading organic pollutants under visible-light irradiation, their visible-light photocatalytic activities are still low and far from practical application. In this study, novel graphene-functionalized Bi-bridge Z-scheme black BiOCI/Bi2O3 (black BiOCI-Bi-Bi2O3/rGO) heterojunctions with oxygen vacancies were prepared via in situ Fe reduction of BiOCI/graphene oxide nanoplates. In comparison with BiOCI/graphene oxide nanoplates, the black BiOCI-Bi-Bi2O3/rGO heterojunctions have stronger visible-light absorption, and exhibit more efficient charge separation and higher visible-light photo catalytic activity in degrading 2-nitrophenol (2NP). The black BiOCI-Bi-Bi2O3/rGO(0.4) shows the highest visible light photocatalytic activity with almost complete degradation of 2NP, which is attributed to proper bandgap match between black BiOCI and Bi2O3, multiple charge transfer channels via Bi-bridge and rGO, and efficient charge separation. Of special importance, black BiOCI-Bi-Bi2O3/rGO heterojunction can effectively treat real industrial wastewater with 70.3% COD removal efficiency, and it shows superior long-term stability. Additionally, a possible photocatalytic mechanism of black BiOCI-Bi-Bi2O3/rGO heterojunctions based on multiple charge transfer channels was proposed.
机译:尽管Bi基化合物是有效的光催化剂,用于在可见光照射下降解有机污染物,但它们的可见光光催化活性仍然低,远离实际应用。在该研究中,通过原位的Fe减少的BioCi /石墨烯氧化物纳米层,通过原位的Fe减少制备新的石墨烯官能化双桥Z形Z-Schemeb BlioCi / Bi2O3(黑Bioci-Bi-Bi-Bi2O3 / Rgo)异质结。与BioCi /石墨烯氧化物纳米板相比,黑色Bioci-Bi-Bi-Bi2O3 / Rgo杂交疾病具有较强的可见光吸收,并且在降解2-硝基苯酚(2NP)中表现出更有效的电荷分离和更高的可见光光催化活性。黑色Bioci-Bi-Bi2O3 / Rgo(0.4)显示了最高可见光光催化活性,其几乎完全降解了2NP,这归因于黑色BioCi和Bi2O3之间的适当的带隙匹配,通过双桥和RGO多电荷转移通道,和高效的电荷分离。特别重要的是,黑色Bioci-Bi-Bi-Bi2O3 / Rgo异质结可以有效地治疗具有70.3%的COD去除效率的真正工业废水,并显示出优异的长期稳定性。另外,提出了基于多电荷转移通道的黑Bioci-Bi-Bi-Bi-Bi-Bi-Bi-Bi2O3 / Rgo杂交功能的可能的光催化机制。

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