高效光催化剂Bi2Fe4O9晶体陶瓷的化学合成

M. Verma, Vinod Kumar, T. Das, R. Sonwani, Vishnu Shankar Rai, Dinesh I. Prajapati, Kedar Sahoo, Vishal Kushwaha, Asha Gupta, K. Mandal
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引用次数: 3

摘要

采用软化学方法在较低烧结温度下成功合成了Bi2Fe4O9晶体陶瓷,并对其在UV-VIS照射下对刚果红(CR)的吸附进行了光催化行为分析。粉末x射线衍射证实了Bi2Fe4O9陶瓷的单相形成,透射电镜观察到Bi2Fe4O9陶瓷的粒径为148±5 nm,显示了材料的结晶性质。此外,通过在可见光下对刚果红的降解来评价Bi2Fe4O9陶瓷的光催化活性。合成材料的光学带隙(Eg)为1.8 eV。由于带隙更小(1.8 eV),它比BiFeO3和TiO2等其他合成材料具有更高的光催化活性。此外,工艺变量如pH。
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Synthesis of Bi2Fe4O9 Crystalline Ceramic as Extremely Capable Photocatalyst via Proficient Chemical Route
Bi2Fe4O9 crystalline ceramic was successfully synthesized through a soft chemical route at lower sintering temperature for analysis of photocatalytic behavior with respect to adsorption of Congo Red (CR) in the presence of UV-VIS irradiation. The single-phase formation of Bi2Fe4O9 ceramic was confirmed by powder X-ray diffraction studies and particle size observed by TEM analysis was found to be 148 ± 5 nm which reveals the crystalline nature of the materials. Additionally, the photocatalytic activity of Bi2Fe4O9 ceramic was evaluated by the degradation of Congo Red in presence of visible light. The optical band gap (Eg) of the synthesized materials was found to be 1.8 eV. It exhibited greater photocatalytic activity than other synthesized materials like BiFeO3 as well as TiO2 due to a smaller band gap (1.8 eV). Furthermore, process variables such as pH.
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