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新型 CoAl-LDH/g-CN/RGO 三元杂化材料具有显著的 2D/2D/2D 结构,用于高效可见光诱导光催化去除染料和抗生素污染物。

Novel CoAl-LDH/g-CN/RGO ternary heterojunction with notable 2D/2D/2D configuration for highly efficient visible-light-induced photocatalytic elimination of dye and antibiotic pollutants.

机构信息

Department of Environmental Engineering, Kyungpook National University, Daegu 702 701, South Korea.

Department of Environmental Engineering, Kyungpook National University, Daegu 702 701, South Korea.

出版信息

J Hazard Mater. 2019 Apr 15;368:778-787. doi: 10.1016/j.jhazmat.2019.01.114. Epub 2019 Feb 1.

DOI:10.1016/j.jhazmat.2019.01.114
PMID:30739031
Abstract

In this study, we fabricate a novel ternary heterojunction comprising CoAl-layered double hydroxide, g-CN, and reduced graphene oxide (LDH/CN/RGO) with a notable 2D/2D/2D configuration using a simple one-step hydrothermal method. The visible-light-induced LDH/CN/RGO ternary heterojunctions displayed significantly enhanced photocatalytic performance towards the degradation of aqueous Congo red (CR, dye) and tetracycline (TC, antibiotic) contaminants, which is far superior to that observed for pristine CN (base material), LDH, P25 (reference), and binary CN/RGO and LDH/CN heterojunctions. In particular, the LDH/CN/RGO ternary heterojunction with RGO and LDH contents of 1 wt.% and 15 wt.%, respectively, exhibited the highest degradation activity among all the fabricated catalysts, and it also displayed exceptional stability during recycling experiments. The significant enhancement in the photocatalytic performance and good stability of existing LDH/CN/RGO ternary heterojunctions were primarily attributed to the large intimate interfacial contact between constituent CN, LDH, and RGO prompted by their exceptional 2D/2D/2D arrangement, which accelerates the interfacial charge-transfer processes to effectively hinder the recombination of photoexcited charge carriers. The present study provides new insights into the rational design and fabrication of novel g-CN-based 2D/2D/2D layered ternary heterojunctions as high-performance photocatalysts, and promotes their application in addressing diverse energy and environmental issues.

摘要

在这项研究中,我们使用简单的一步水热法制备了一种由 CoAl 层状双氢氧化物、g-CN 和还原氧化石墨烯(LDH/CN/RGO)组成的新型三元异质结,具有显著的 2D/2D/2D 结构。可见光诱导的 LDH/CN/RGO 三元异质结在降解水溶液刚果红(CR,染料)和四环素(TC,抗生素)污染物方面表现出显著增强的光催化性能,远优于原始 CN(基体)、LDH、P25(参比)以及二元 CN/RGO 和 LDH/CN 异质结。特别是,具有 1wt.%RGO 和 15wt.%LDH 含量的 LDH/CN/RGO 三元异质结在所有制备的催化剂中表现出最高的降解活性,并且在循环实验中也表现出出色的稳定性。现有 LDH/CN/RGO 三元异质结光催化性能的显著提高和良好的稳定性主要归因于组成 CN、LDH 和 RGO 之间的大的紧密界面接触,这是由其独特的 2D/2D/2D 排列所促成的,从而加速了界面电荷转移过程,有效地抑制了光生载流子的复合。本研究为合理设计和制备新型基于 g-CN 的 2D/2D/2D 层状三元异质结作为高性能光催化剂提供了新的思路,并促进了它们在解决各种能源和环境问题中的应用。

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