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可见光诱导的石墨相氮化碳@镍铝层状双氢氧化物纳米复合材料,用于增强水中染料的光催化去除性能。

Visible-Light-Induced Graphitic-CN@Nickel-Aluminum Layered Double Hydroxide Nanocomposites with Enhanced Photocatalytic Activity for Removal of Dyes in Water.

机构信息

Department of Chemistry , Tarbiat Modares University , P.O. Box 14115-175, Tehran , Iran.

出版信息

Inorg Chem. 2018 Jul 16;57(14):8681-8691. doi: 10.1021/acs.inorgchem.8b01636. Epub 2018 Jun 29.

Abstract

One of the major challenges in photodegradation of organic dyes is designing a visible light active and highly efficient photocatalyst that can degrade both cationic and anionic dyes. To design such an ideal catalyst, this work synthesized graphitic-CN@NiAl layered double hydroxide nanocomposites (g-CN@NiAl-LDH NCPs) with various g-CN contents through a convenient and high-yield method. The photocatalytic process was optimized by evaluating the impacts of type of dye (cationic and anionic), photocatalyst dosage, pH, and contact time. According to the results, the photocatalytic performance of g-CN@NiAl-LDH NCPs in degradation of cationic and anionic dyes is more noticeable than the photocatalytic activities of its discrete components. The observed improvement in the photocatalytic performance of the g-CN@NiAl-LDH NCPs can be attributed to the intimacy of their contact interfaces and a synergistic effect between pristine g-CN and NiAl-LDH, which results in effective mass transfer and separation of photogenerated charge carriers. The impact of some charge scavengers on the process was evaluated to define the role of each active species and propose a possible photodegradation mechanism. The g-CN@Ni-Al LDH NCPs could be reused for four cycles without any significant loss in efficiency.

摘要

在有机染料的光降解中,主要挑战之一是设计一种可见光活性和高效的光催化剂,能够降解阳离子和阴离子染料。为了设计这样一种理想的催化剂,本工作通过一种简便、高产的方法合成了具有不同 g-CN 含量的石墨相氮化碳@NiAl 层状双氢氧化物纳米复合材料(g-CN@NiAl-LDH NCPs)。通过评估染料类型(阳离子和阴离子)、光催化剂用量、pH 值和接触时间对光催化过程的影响,对光催化过程进行了优化。结果表明,g-CN@NiAl-LDH NCPs 在降解阳离子和阴离子染料方面的光催化性能比其离散组分的光催化活性更为显著。g-CN@NiAl-LDH NCPs 光催化性能的提高可归因于其接触界面的紧密性以及原始 g-CN 和 NiAl-LDH 之间的协同效应,这导致了有效的传质和光生载流子的分离。评估了一些电荷清除剂对该过程的影响,以确定每种活性物质的作用并提出可能的光降解机制。g-CN@Ni-Al LDH NCPs 可以重复使用四次而没有明显的效率损失。

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