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基于由相互连接的纳米片组成的 BiFeO₃ (BiFeO₃)异质结构的太阳光驱动光催化降解甲基橙。

Sunlight-Driven Photocatalytic Degradation of Methyl Orange Based on Bismuth Ferrite (BiFeO₃) Heterostructures Composed of Interconnected Nanosheets.

机构信息

Post Graduate and Research Department of Physics, The American College, Madurai 625002, India.

Post Graduate and Research Department of Chemistry, Lady Doak College, Madurai 625002, India.

出版信息

J Nanosci Nanotechnol. 2020 Mar 1;20(3):1851-1858. doi: 10.1166/jnn.2020.17174.

Abstract

Herein, we report the facile microwave-assisted synthesis, characterization and photocatalytic degradation applications of Bismuth ferrite heterostructures composed of interconnected nanosheets (BHNs). The synthesized materials were subjected to several analytical studies such as scanning electron microscopy (SEM), transmission electron microscopy (TEM), X-ray diffraction (XRD), energy dispersive spectroscopy (EDS), Fourier transform infrared (FTIR) spectroscopy and UV-visible spectroscopy in order to examine the morphological, structural, optical and photo catalytic properties. The structural and morphological characterizations confirmed the rhombohedral perovskite crystal structure and the formation of heterostructures composed of interconnected nanosheets for the synthesized material. The compositional characterization revealed that the synthesized material is bismuth ferrite with high purity. The BHNs were further used as efficient photocatalyst for the photocatalytic degradation of highly hazardous pollutant methyl orange under sunlight irradiation. The sunlight driven photocatalytic experiments revealed ~86% photodegradation of methyl orange dye in 150 min. The presented work revealed that the synthesized BHNs are excellent material for the photocatalytic degradation of various organic contaminants and hazardous pollutants.

摘要

在此,我们报告了由互连纳米片组成的铁酸铋异质结构(BHNs)的简便微波辅助合成、表征和光催化降解应用。所合成的材料经过了几种分析研究,如扫描电子显微镜(SEM)、透射电子显微镜(TEM)、X 射线衍射(XRD)、能谱(EDS)、傅里叶变换红外(FTIR)光谱和紫外可见光谱,以检查其形态、结构、光学和光催化性能。结构和形态特征证实了所合成材料具有菱面体钙钛矿晶体结构和由互连纳米片组成的异质结构的形成。组成特征表明,所合成的材料是具有高纯度的铁酸铋。BHNs 进一步被用作高效光催化剂,在阳光照射下光催化降解高危害性污染物甲基橙。阳光驱动的光催化实验表明,在 150 分钟内甲基橙染料的光降解率约为 86%。本工作表明,所合成的 BHNs 是用于光催化降解各种有机污染物和有害污染物的优秀材料。

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