Doping Strontium into Neodymium Manganites Nanocomposites for Enhanced Visible light Driven Photocatalysis

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作者
I. A. Abdel-Latif
L. A. Al-Hajji
M. Faisal
Adel A. Ismail
机构
[1] Najran University,Physics Department, College of Science
[2] Najran,Advanced Materials and Nano
[3] Nanotechnologyand and Advanced Materials Program,Research Centre
[4] Energy & Building Research Center,Reactor Physics Department
[5] Kuwait Institute for Scientific Research (KISR),undefined
[6] Najran University,undefined
[7] NRC,undefined
[8] Atomic Energy Authority,undefined
[9] Abou Zabaal P.O. 13759,undefined
[10] Central Metallurgical R& D Institute,undefined
[11] CMRDI,undefined
[12] Helwan,undefined
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摘要
Nd1−xSrxMnO3 nanocomposites perovskites were synthesized using sol gel method at different Sr content x = 0.3, 0.5, 0.7, and 0.9. The photocatalytic performance of the Nd1−xSrxMnO3 nanocomposites for photodegradation of Acridine orange dye (AO) was evaluated over visible light illumination. The single phase of orthorhombic pbnm was formed for x = 0.3 and 0.5; however monoclinic and orthorhombic were observed at x = 0.7 and 0.9. The Energy gap of the Nd1−xSrxMnO3 nanocomposites were estimated for all concentrations to be in the range of 3 ± 0.05 eV. The photocatalytic efficiency of Nd0.3Sr0.7MnO3 nanocomposite was 95% of the initial AO dye concentration within 3 h illumination time. The linear increase of the photodegradation rate was found in our samples as a result of the increase of Sr contents from 0.3 to 0.7wt %. Interestingly, the Nd0.3Sr0.7MnO3 content has the highest degradation rate of AO which is two times faster than undoped NdMnO3. This superior behavior in photocatalytic activity of Nd0.3Sr0.7MnO3 nanocomposite emerges from large surface area, structural anisotropy, and small particle size. These findings shows convincingly that the Nd1−xSrxMnO3 photocatalysts possess great promise for visible light driven photodegradation of AO dye.
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