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制备新型 CuWS/NiTiO 异质结构以实现高效可见光光催化析氢和污染物降解。

Fabrication of novel CuWS/NiTiO heterostructures for efficient visible-light photocatalytichydrogen evolution and pollutant degradation.

机构信息

Institute of Petrochemical Technology, Jilin Institute of Chemical Technology, Jilin 132022, PR China.

Institute of Petrochemical Technology, Jilin Institute of Chemical Technology, Jilin 132022, PR China.

出版信息

J Colloid Interface Sci. 2022 May;613:194-206. doi: 10.1016/j.jcis.2021.10.179. Epub 2021 Nov 1.

Abstract

The design and development of efficient and durable catalysts with visible-light response for photocatalytic hydrogen production and pollutants degradation is considered as one of the most challenging tasks. In present work, a novel CuWS/NiTiO (abbreviated as × CWS/NTO; x  = 0.25, 0.50, 0.75 and 1.00) composite was prepared via a facile electrospinning/calcination technique along with a convenient hydrothermal method. The as-prepared CWS/NTOcomposite was composed of 2D CWS nanosheets and 1D NTO nanofibers manifested by SEM and TEM images. The results of XPS verified the interfacial interaction between CWS and NTO, confirming the heterojunction formation in CWS/NTOcomposite. Photocatalytic tests demonstrated as-prepared CWS/NTO catalysts exhibited outstanding and stable photocatalytic performances for H production and pollutants degradation under visible light (λ > 420 nm) irradiation. Specially, 0.50 CWS/NTO sample displayed the highest H-evolution activity of 810 μmol·g·h with the apparent quantum efficiency (AQE) value of 1.65 % at 420 nm. Additionally, it also exhibited the optimal photodegradation properties with the rate constants of 0.030, 0.413 and 0.028 min for TC, RhB and Cr(VI), respectively. The excellent catalytic activities could be attributed to the enhanced visible-light adsorption, high specific surface area and efficient separation of photogenerated charge carriers. The ESR tests and free radicals capturing experiments confirmed that ·O and h were primary active species for TC/RhB degradation. Eventually, the probable catalytic mechanism was put forward and detailly analysed. The present work provides perspectives of rational design on NiTiO-based catalysts with superior photocatalytic performance for energy regeneration and environmental remediation.

摘要

具有可见光响应的高效和耐用催化剂的设计和开发,用于光催化制氢和污染物降解,被认为是最具挑战性的任务之一。在本工作中,通过简便的静电纺丝/煅烧技术以及方便的水热法制备了一种新型的 CuWS/NiTiO(简写为 xCWS/NTO;x = 0.25、0.50、0.75 和 1.00)复合材料。所制备的 CWS/NTO 复合材料由 SEM 和 TEM 图像显示的 2D CWS 纳米片和 1D NTO 纳米纤维组成。XPS 的结果证实了 CWS 和 NTO 之间的界面相互作用,证实了 CWS/NTO 复合材料中异质结的形成。光催化测试表明,所制备的 CWS/NTO 催化剂在可见光(λ > 420nm)照射下表现出出色且稳定的光催化制氢和污染物降解性能。特别是,0.50 CWS/NTO 样品在 420nm 时表现出最高的 810μmol·g·h 的 H 演化活性,表观量子效率(AQE)值为 1.65%。此外,它还表现出最佳的光降解性能,TC、RhB 和 Cr(VI)的速率常数分别为 0.030、0.413 和 0.028 min。优异的催化活性可归因于增强的可见光吸收、高比表面积和光生载流子的有效分离。ESR 测试和自由基捕获实验证实,·O 和 h 是 TC/RhB 降解的主要活性物质。最终,提出并详细分析了可能的催化机制。本工作为具有优异光催化性能的 NiTiO 基催化剂的合理设计提供了新的思路,可用于能源再生和环境修复。

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