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具有增强可见光光催化活性的可重复使用碳量子点(CQDs)修饰纳米复合材料的制备

Fabrication of a reusable carbon quantum dots (CQDs) modified nanocomposite with enhanced visible light photocatalytic activity.

作者信息

Malitha Md Dipu, Molla Md Tamzid Hossain, Bashar Md Abul, Chandra Dipesh, Ahsan Md Shameem

机构信息

Department of Applied Chemistry and Chemical Engineering, University of Rajshahi, Rajshahi, 6205, Bangladesh.

出版信息

Sci Rep. 2024 Aug 2;14(1):17976. doi: 10.1038/s41598-024-66046-5.

Abstract

In awareness of industrial dye wastewater, carbon quantum dots (CQDs) and cobalt zinc ferrite (CZF) nanocomposites were synthesised for the making of carbon quantum dots coated cobalt zinc ferrite (CZF@CQDs) nanophotocatalyst using oxidative polymerization reaction. The results of TEM, zeta potential value, and FTIR confirm highly dispersed 1-4 nm particles with the - 45.7 mV carboxylic functionalized surface of CQDs. The results of the synthesised CZF@CQDs photocatalyst showed an average particle size of ~ 15 nm according to TEM, SEM, and XRD. The photocatalyst showed a 1.20 eV band gap, which followed the perfect visible light irradiation. TGA and DTA revealed the good thermal stability of the nanophotocatalyst. VSM was carried out, and the saturation magnetisations for CZF and CZF@CQDs were 42.44 and 36.14 emu/g, respectively. A multipoint study determined the BET-specific surface area of the CZF@CQDs photocatalyst to be 149.87 m/g. Under visible light irradiation, the final CZF@CQDs nanophotocatalyst demonstrated remarkable efficiency (~ 95% within 25 min) in the photocatalytic destruction of Reactive Blue 222 (RB 222) and Reactive Yellow 145 (RY 145) dyes, as well as mechanical stability and recyclability. Even after the recycling of the degradation study, the nanophotocatalyst efficiency (~ 82%, 7th cycles) was predominantly maintained. The effects of several parameters were also investigated, including initial dye concentration, nanophotocatalyst concentration, CQD content, initial pH of the dye solution, and reaction kinetics. Degradation study data follow the first-order reaction rate (R > 0.93). Finally, a simple and low-cost synthesis approach, rapid degradation, and outstanding stability of the CQD-coated CZF nanophotocatalyst should make it a potential photocatalyst for dye wastewater treatment.

摘要

考虑到工业染料废水问题,通过氧化聚合反应合成了碳量子点(CQDs)和钴锌铁氧体(CZF)纳米复合材料,用于制备碳量子点包覆钴锌铁氧体(CZF@CQDs)纳米光催化剂。透射电子显微镜(TEM)、zeta电位值和傅里叶变换红外光谱(FTIR)结果证实,CQDs的粒径高度分散在1-4nm,其表面羧基官能化,zeta电位为-45.7mV。根据TEM、扫描电子显微镜(SEM)和X射线衍射(XRD)结果,合成的CZF@CQDs光催化剂平均粒径约为15nm。该光催化剂的带隙为1.20eV,适合可见光照射。热重分析(TGA)和差示热分析(DTA)表明该纳米光催化剂具有良好的热稳定性。进行了振动样品磁强计(VSM)测试,CZF和CZF@CQDs的饱和磁化强度分别为42.44和36.14emu/g。多点研究确定CZF@CQDs光催化剂的BET比表面积为149.87m²/g。在可见光照射下,最终的CZF@CQDs纳米光催化剂在光催化降解活性蓝222(RB 222)和活性黄145(RY 145)染料方面表现出显著的效率(25分钟内约95%),以及机械稳定性和可回收性。即使在降解研究循环使用后,纳米光催化剂的效率(第7次循环时约82%)仍能基本保持。还研究了几个参数的影响,包括初始染料浓度、纳米光催化剂浓度、CQD含量、染料溶液的初始pH值和反应动力学。降解研究数据符合一级反应速率(R>0.93)。最后,CQD包覆的CZF纳米光催化剂简单低成本的合成方法、快速降解和出色的稳定性使其成为处理染料废水的潜在光催化剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/605d/11297338/6da7e0114ea8/41598_2024_66046_Fig1_HTML.jpg

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