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纳米结构NiCrFeO的不同燃料辅助燃烧合成:一种用于室温下还原硝基芳烃以及在单一和三元溶液中光催化降解各种有机染料的高可回收性通用催化剂。

Different Fuel-Adopted Combustion Syntheses of Nano-Structured NiCrFeO: A Highly Recyclable and Versatile Catalyst for Reduction of Nitroarenes at Room Temperature and Photocatalytic Degradation of Various Organic Dyes in Unitary and Ternary Solutions.

作者信息

Singh Sumit, Sharma Shikha, Manhas Ujwal, Qadir Irfan, Atri Amit Kumar, Singh Devinder

机构信息

Department of Chemistry, University of Jammu, Jammu 180006, India.

出版信息

ACS Omega. 2022 May 31;7(23):19853-19871. doi: 10.1021/acsomega.2c01616. eCollection 2022 Jun 14.

Abstract

As industrialization progresses, there is a large release of hazardous pollutants into the environment. These pollutants, which contain nitro compounds and organic dyes, are extremely dangerous due to their toxic and carcinogenic nature. An efficient, environmentally benign, and economical catalyst to degrade environmental pollutants or convert them into useful products has been of sustained interest in recent years. In this context, we report a simple and inexpensive combustion fabrication of NiCrFeO using different fuels such as glycine, polyvinyl alcohol (PVA), and urea, showing tremendous catalytic and photocatalytic functionalities. Rietveld refinement and X-ray diffraction studies confirmed the formation of single-phase ferrites, with crystallite sizes ranging from 3.9 to 43.31 nm. The values of optical band gap, obtained from the diffused reflectance spectroscopy technique, lie in the visible region range (1.50-1.60 eV), and hence, all the synthesized ferrites can act as good photocatalysts in the presence of visible light. All the NCF nanocatalysts were utilized for the reduction of nitroarenes and photocatalytic degradation of various cationic (RhB and MB) and anionic (MO) dyes and their mixture. NCFP displayed excellent activity for the reduction and oxidation reactions owing to its large surface area and low optical band gap. Furthermore, the photo-oxidative degradation by NCFP was also enhanced due to its low recombination of charge carriers as confirmed by the photoluminescence (PL) spectroscopy. NCFP efficiently reduces nitrobenzene to aminobenzene with 95% yield using sodium borohydride as the reducing agent in methanol medium at RT in 10 min. The results of photocatalytic activity have shown that the degradation efficiency of NCFP follows the order RhB > MB > MO in their unitary solution. Furthermore, in the case of the mixture of dyes, NCFP showed enhanced photocatalytic degradation for cationic dyes (RhB and MB) compared to that of anionic dye (MO). From the performance point of view, this catalyst can be useful in industrial application because of its high stability, greater catalytic efficiency, and cost-effectiveness.

摘要

随着工业化的推进,大量有害污染物被排放到环境中。这些含有硝基化合物和有机染料的污染物,因其毒性和致癌性而极其危险。近年来,一种高效、环境友好且经济的催化剂,用于降解环境污染物或将其转化为有用产品,一直备受关注。在此背景下,我们报道了一种使用甘氨酸、聚乙烯醇(PVA)和尿素等不同燃料,通过简单且廉价的燃烧法制备NiCrFeO,其展现出巨大的催化和光催化功能。Rietveld精修和X射线衍射研究证实形成了单相铁氧体,微晶尺寸范围为3.9至43.31纳米。通过漫反射光谱技术获得的光学带隙值位于可见光区域范围(1.50 - 1.60电子伏特),因此,所有合成的铁氧体在可见光存在下都可作为良好的光催化剂。所有的NCF纳米催化剂都用于硝基芳烃的还原以及各种阳离子(罗丹明B和亚甲基蓝)和阴离子(甲基橙)染料及其混合物的光催化降解。由于其大表面积和低光学带隙,NCFP在还原和氧化反应中表现出优异的活性。此外,光致发光(PL)光谱证实由于其低电荷载流子复合,NCFP的光氧化降解也得到增强。在室温下的甲醇介质中,使用硼氢化钠作为还原剂,NCFP在10分钟内可将硝基苯高效还原为苯胺,产率达95%。光催化活性结果表明,在单一溶液中,NCFP的降解效率顺序为罗丹明B>亚甲基蓝>甲基橙。此外,在染料混合物的情况下,与阴离子染料(甲基橙)相比,NCFP对阳离子染料(罗丹明B和亚甲基蓝)表现出增强的光催化降解。从性能角度来看,这种催化剂因其高稳定性、更高的催化效率和成本效益,可在工业应用中发挥作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0912/9202261/fe0b41ea58c3/ao2c01616_0015.jpg

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