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Synthesis, characterization and photocatalytic properties of Iron oxide nanoparticles synthesized by sol-gel autocombustion with ultrasonic irradiation

机译:溶胶-凝胶自燃超声辐射合成氧化铁纳米粒子的合成,表征及光催化性能

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Iron oxide (Fe2O3) nanoparticles were prepared by combination of sol-gel autocombustion and ultrasonic irradiation. The XRD pattern reveals that the crystallite size of sample is 36.7 nm and the phase identification shows hematite, syn has been crystalized. The morphology of the sample investigated by FESEM showed that particle size of the sample was about 76 nm. The optical property of Fe2O3 investigated by DRS showed that there may exist three energy band gaps in iron oxide nanoparticles . FT-IR technique was used to determine the functional group of product. In agreement to XRD results, the result of FT-IR revealed no organic residue in product. Photo catalyst nanoparticles were immobilized on the surface of glass slide using Doctor Blade method. Photocatalytic degradation of reactive red 4 (RR4) was investigated under UV light using iron oxide nanoparticles as catalyst. The kinetic of RR4 degradation under UV light irradiation in the presence of Fe2O3 as photocatalyst, and rate constant was determined. Experiments exhibited that Fe2O3 nanoparticles decomposed 52% of azo dye RR4 in solution duration 135 min. The photo catalytic reaction kinetic of RR4 degradation in the presence of Fe2O3 nanoparticles followed Langmuir-Hinshelwood model with the rate constant of about 0.005 min-1.
机译:溶胶-凝胶自燃和超声辐照结合制备了氧化铁(Fe2O3)纳米粒子。 XRD图谱表明样品的微晶尺寸为36.7nm,并且相鉴定显示赤铁矿,顺式已经结晶。通过FESEM研究的样品的形态表明,样品的粒径为约76nm。 DRS研究的Fe2O3的光学性质表明,纳米氧化铁中可能存在三个能带隙。 FT-IR技术用于确定产物的官能团。与XRD结果一致,FT-IR结果表明产物中没有有机残留物。使用刮刀法将光催化剂纳米颗粒固定在载玻片的表面上。以氧化铁纳米粒子为催化剂,研究了紫外光下活性红4(RR4)的光催化降解。在Fe2O3作为光催化剂的情况下,在紫外线照射下RR4降解的动力学,并确定了速率常数。实验表明,Fe2O3纳米颗粒在135分钟的溶液持续时间内分解了52%的偶氮染料RR4。在Fe2O3纳米粒子存在下RR4降解的光催化反应动力学遵循Langmuir-Hinshelwood模型,速率常数约为0.005 min-1。

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