NiAlFe LTH /MoS2 p-n junction heterostructure composite as an effective visible-light-driven photocatalyst for enhanced degradation of organic dye under high alkaline conditions

被引:6
|
作者
Kim C.-M. [1 ,3 ]
Chowdhury M.F. [3 ]
Im H.R. [3 ]
Cho K. [2 ]
Jang A. [1 ,3 ]
机构
[1] Future and Fusion Lab of Architectural, Civil and Environmental Engineering, Korea University, Seoul
[2] School of Civil, Environmental, Architectural Engineering, Korea University, Seoul
[3] Department of Global Smart City, Sungkyunkwan University (SKKU), 2066, Seobu-ro, Jangan-gu, Gyeonggi-do, Suwon
基金
新加坡国家研究基金会;
关键词
Alkaline condition; Dye degradation; LTH/MoS[!sub]2[!/sub; Photocatalysis; UV/Visible light;
D O I
10.1016/j.chemosphere.2024.142094
中图分类号
学科分类号
摘要
Designing of an effectual heterostructure photocatalyst for catalytic organic pollutant exclusion has been the subject of rigorous research intended to resolve the related environmental aggravation. Fabricating p-n junctions is an effective strategy to promote electron-hole separation of semiconductor photocatalysts as well as enhance the organic toxin degradation performance. In this study, a series of n-type NiAlFe-layered triple hydroxide (LTH) loaded with various ratios of p-type MoS2 was synthesized for forming a heterostructure LTH/MoS2 (LMs) by an in situ hydrothermal strategy. The photocatalysts were characterized by XRD, SEM&EDX, TEM, FT-IR, XPS, as well as UV–vis DRS. The photoactivity of photocatalysts was tested by the degradation of Indigo Carmine (IC) dye. The optimized catalyst (LM1) degrades 100% of indigo dye in high alkaline pH under UV light for 100 min. Besides, the degradation rate of LM1 is 15 times higher than that of pristine NiAlFe-LTH. The enhanced photoactivity is attributed to the synergistic effect between NiAlFe-LTH and MoS2 as well as the p-n junction formation. © 2024 Elsevier Ltd
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