Enhancement of Fenton-like degradation performance of organic dyes by constructing Ni substitution at the B-site for LaCoxNi1−xO3 perovskite catalysts

IF 2.5 3区 化学 Q2 CHEMISTRY, MULTIDISCIPLINARY
Han Zhang, Quanyu Suo, Ruiduo Zhao, Xia Zhang and Shushu Huang
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Abstract

Perovskite-type catalysts show good prospects in the field of pollutant degradation. Bimetallic doping can regulate the structure of the perovskite and improve its performance. A series of Ni-substituted LaCoxNi1−xO3 (x = 1, 0.75, 0.5, 0.25, and 0) catalysts were prepared to degrade reactive brilliant red X-3B by activating H2O2. SEM and XRD analyses revealed that Ni was successfully incorporated into the LaCoO3 material, and the B-site substituted material exhibited an increased number of active sites. The experimental results showed that the Ni substitution at the B-site could effectively enhance the Fenton-like degradation performance of LaCoO3. B-site doping can accelerate charge transfer, thereby enhancing catalytic efficiency. LaCo0.5Ni0.5O3 exhibited an optimal degradation efficiency of 76.5%, which was 1.26 and 1.48 times higher than those of LaCoO3 and LaNiO3, respectively. Free radical capture and electron paramagnetic experiments showed that LaCoxNi1−xO3 could activate H2O2 to produce ˙OH, ˙O2 and other free radicals. This work may offer new insight for enhancing the Fenton-like degradation performance of LaCoO3 by another metal substitution at the B-site.

Abstract Image

用b位镍取代LaCoxNi1−xO3钙钛矿催化剂增强有机染料类fenton降解性能
钙钛矿型催化剂在污染物降解领域具有良好的应用前景。双金属掺杂可以调节钙钛矿的结构,提高钙钛矿的性能。制备了一系列ni取代的LaCoxNi1−xO3 (x = 1、0.75、0.5、0.25和0)催化剂,通过活化H2O2降解活性艳红x - 3b。SEM和XRD分析表明,Ni被成功地掺入到LaCoO3材料中,b位取代材料的活性位点数量增加。实验结果表明,b位的Ni取代可以有效提高LaCoO3的类fenton降解性能。b位掺杂可以加速电荷转移,从而提高催化效率。LaCo0.5Ni0.5O3的最佳降解效率为76.5%,分别是LaCoO3和LaNiO3的1.26倍和1.48倍。自由基捕获和电子顺磁实验表明,LaCoxNi1−xO3能激活H2O2生成˙OH、˙O2−等自由基。这项工作可能为通过在b位点上另一种金属取代来增强LaCoO3的类fenton降解性能提供新的见解。
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来源期刊
New Journal of Chemistry
New Journal of Chemistry 化学-化学综合
CiteScore
5.30
自引率
6.10%
发文量
1832
审稿时长
2 months
期刊介绍: A journal for new directions in chemistry
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