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Investigations on the enhanced dye degradation activity of heterogeneous BiFeO3–GdFeO3 nanocomposite photocatalyst

机译:BiFeO3-GdFeO3纳米复合光催化剂提高染料降解活性的研究

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摘要

Perovskite types of nanocomposites of BiFeO3–GdFeO3 (BFO-GFO) has been synthesized using sol-gel route for the first time. The nanocomposite powders were characterized by powder X-Ray diffraction (PXRD) to confirm the existence of mixed crystallographic phases. EDX analysis on nanocomposites estimates the composition of individual element present in BFO-GFO matrix. The induced strain upon loading GdFeO3(GFO) in BiFeO3 (BFO) matrix has been computed with the aid of Williamson –Hall (W–H) plot. Surface morphologies of nanocomposite powders has been studied using Field Emission Scanning Electron Microscope >(FESEM) images. The observed changes in the band gap energies of nanocomposite powders due to the inclusion of GFO has been ascertained from the tauc plots. PL emission of BFO upon loading GFO found to have detected in the IR region due to defect level transition. Finally, the methylene blue dye (MB) degradation characteristics of BFO, GFO and the nanocomposite powders of BFO-GFO have also been studied. The overall results obtained has been discussed in detail.
机译:BiFeO3-GdFeO3(BFO-GFO)的钙钛矿型纳米复合材料是首次使用溶胶-凝胶法合成的。通过粉末X射线衍射(PXRD)表征纳米复合粉末,以证实存在混合结晶相。对纳米复合材料的EDX分析估计了BFO-GFO基质中单个元素的组成。在BiFeO3(BFO)基质中加载GdFeO3(GFO)时的诱导应变已借助Williamson-Hall(W-H)图进行了计算。使用场发射扫描电子显微镜>( FESEM)图像研究了纳米复合粉末的表面形态。由tauc图确定了由于GFO的引入而观察到的纳米复合粉末的带隙能的变化。由于缺陷水平的转变,发现在IR区域中已检测到加载GFO时BFO的PL发射。最后,还研究了BFO,GFO的亚甲基蓝染料(MB)降解特性以及BFO-GFO的纳米复合粉体。已详细讨论了获得的总体结果。

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