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Evaluation of Photocatalytic Activity in Water Pollutants and Cytotoxic Response of α-Fe2O3 Nanoparticles

机译:评价水污染物的光催化活性和α-Fe2O3纳米颗粒的细胞毒反应。

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α-Fe2O3 samples were manufactured by means of the polymeric precursor method. The powders were sintered and calcined at temperatures of 300–700 °C for 2 h, respectively. In the X-ray diffraction results, the formation of the rhombohedral phase without secondary phases was exhibited. The size of the particle increased after calcination at 700 °C, exhibiting a slightly more irregular morphology for the samples calcined with the addition of NH4OH in the synthesis process. From the field-emission scanning electron microscopy measurements, the particle size was determined, showing a smaller size for the samples without NH4OH in the synthesis process. The samples calcined at 600 °C had a size of 100 nm, with the sizes for lower temperatures being smaller. The size of the nanoparticle agglomerates was largest for the samples with NH4OH; however, the zeta potential was slightly lower over time for these samples. The phase study of the α-Fe2O3 nanoparticles was confirmed by means of Raman spectroscopy, without additional bands of another crystal structure. In addition, the synthesized nanoparticles exhibited good photocatalytic activity in the degradation of rhodamine B (RhB) and atrazine (ATZ) within 40 min, with a maximum degradation of 59% for ATZ and 40% for rhodamine. The best responses in the degradation were for the samples without the addition of NH4OH in the synthesis process and in proportions lower than 0.1 g. The cytotoxic effects of the nanoparticles obtained at 600 °C were evaluated in apical cells of onion roots. The results are promising for future applications because no changes were observed in the mitosis of the cells.
机译:α-Fe2O3样品是通过聚合前体方法制造的。将粉末分别在300–700°C的温度下烧结和煅烧2 h。在X射线衍射结果中,显示出没有次生相的菱面体相的形成。在700°C下煅烧后,颗粒尺寸增加,对于在合成过程中添加NH4OH煅烧的样品,其形态略微不规则。从场发射扫描电子显微镜测量,确定了粒径,显示出在合成过程中不含NH 4 OH的样品的粒径较小。在600°C下煅烧的样品尺寸为100 nm,用于较低温度的尺寸更小。对于含NH4OH的样品,纳米颗粒附聚物的尺寸最大。然而,这些样品的ζ电势随时间推移略低。通过拉曼光谱法证实了α-Fe2O3纳米粒子的相研究,没有其他晶体结构的附加谱带。此外,合成的纳米粒子在40分钟内对若丹明B(RhB)和阿特拉津(ATZ)的降解表现出良好的光催化活性,ATZ的最大降解为59%,若丹明的最大降解为40%。降解过程中的最佳响应是在合成过程中不添加NH4OH且比例低于0.1 g的样品。在洋葱根的根尖细胞中评估了在600°C下获得的纳米颗粒的细胞毒性作用。该结果对于将来的应用是有希望的,因为未观察到细胞的有丝分裂发生变化。

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