Department of Environmental Engineering, Kyungpook National University, Daegu, South Korea.
PG & Research Department of Biotechnology, Mahendra Arts & Science College, Kalippatti, Tamil Nadu, India.
J Hazard Mater. 2021 Jul 15;414:125522. doi: 10.1016/j.jhazmat.2021.125522. Epub 2021 Feb 27.
The present investigation describes the photocatalytic degradation of methylene blue (MB) and rhodamine-B (RhB) using molybdenum disulfide (MoS) anchored metal-organic frameworks (MOFs) under visible light irradiation. Herein, MIL-88(Fe) was successfully modified with MoS to yield a novel heterogeneous MoS@MIL-88(Fe) hybrid composite. The prepared catalyst enhances the superior photocatalytic activity than the pristine form of MoS and MIL-88(Fe) framework. The physico-chemical properties of the prepared catalyst were analytically investigated and the results exhibit greater photocatalytic efficiency towards the chosen dyes, with an optical band gap of 2.75 eV. The MoS and MIL-88(Fe) framework could act as efficient oxidation and reduction sites in the as-synthesized MoS@MIL-88(Fe) composite, and generated the non-toxic by-products such as hydroxyl OH), and superoxide species O) for the mineralization of MB and RhB dyes. The degradation kinetics showed that the dye system followed a pseudo-first-order model which is well supported by the Langmuir-Hinshelwood mechanism. Moreover, the reusability studies showed excellent photocatalytic activity after five cycles. Finally, the photocatalytic degradation mechanism of MB and RhB dyes was suggested.
本研究描述了在可见光照射下,使用二硫化钼(MoS)锚定的金属有机骨架(MOFs)对亚甲基蓝(MB)和罗丹明-B(RhB)的光催化降解。在此,成功地用 MoS 对 MIL-88(Fe) 进行了修饰,得到了一种新型的异质 MoS@MIL-88(Fe) 杂化复合材料。所制备的催化剂比原始形式的 MoS 和 MIL-88(Fe) 骨架具有更高的光催化活性。对所制备的催化剂的物理化学性质进行了分析,结果表明,其对所选染料具有更高的光催化效率,光学带隙为 2.75 eV。MoS 和 MIL-88(Fe) 骨架在合成的 MoS@MIL-88(Fe) 复合材料中可以作为有效的氧化和还原位点,并生成非毒性的副产物,如羟基(OH)和超氧自由基(O),从而实现 MB 和 RhB 染料的矿化。降解动力学表明,染料体系遵循准一级动力学模型,这得到了 Langmuir-Hinshelwood 机制的很好支持。此外,重复使用研究表明,经过五次循环后,仍具有出色的光催化活性。最后,提出了 MB 和 RhB 染料的光催化降解机制。