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退火温度对用于光催化降解的钴铁氧体纳米粒子的影响。

Annealing temperature effect on cobalt ferrite nanoparticles for photocatalytic degradation.

机构信息

Department of Physics, Alagappa University, Karaikudi, 630 003, Tamil Nadu, India.

Department of Physics, Alagappa University, Karaikudi, 630 003, Tamil Nadu, India.

出版信息

Chemosphere. 2021 Oct;281:130903. doi: 10.1016/j.chemosphere.2021.130903. Epub 2021 May 21.

Abstract

In this work, cobalt ferrite nanomaterials was prepared employing simple co-precipitation technique and annealed at 300, 400 and 600 °C. XRD study revealed the formation of cubic structure of CoFeO nanoparticles and confirmed by high intense peak at 2θ value of 35.3°. The creation of ferrite phase was further confirmed by the studies such as FTIR, Raman and PL spectra. FTIR spectra confirmed the occurrence of Fe-O and Co-O metal oxygen vibrations and the lattice defects and oxygen vacancies of the CoFeO nanoparticles were explored by PL spectra. No other signals were detected in Raman spectra, which explored pure spinal ferrites. The energy band gap values are obtained by using Tauc plot and the obtained band gap values for all the cobalt ferrite nanoparticles were 2.84, 2.75 and 2.89 eV respectively. The morphology of synthesized cobalt ferrite nanomaterials were observed from the SEM and TEM images. The product annealed at 400 °C showed the better morphology with least amount of agglomeration in comparison to other SEM images. In addition, SAED pattern of magnetic nanoparticles confirmed the existence of polycrystalline nature of the CoFeO nanoparticles. The obtained surface area of CF2 sample was 5.082 m g and pore volume and diameter of CF2 sample was found to be 0.013 cc/g and 3.937 nm respectively. Then, the product annealed at 400 °C exhibited most excellent activity and degraded 74% of cationic dye in 80 min, and it also exhibited excellent stability even maintain in three cycles.

摘要

在这项工作中,采用简单的共沉淀技术制备了钴铁氧体纳米材料,并在 300、400 和 600°C 下退火。XRD 研究表明 CoFeO 纳米粒子形成了立方结构,并通过 2θ 值为 35.3°的高强度峰得到证实。铁氧体相的形成进一步通过 FTIR、拉曼和 PL 光谱等研究得到证实。FTIR 光谱证实了 Fe-O 和 Co-O 金属氧振动的发生,PL 光谱研究了 CoFeO 纳米粒子的晶格缺陷和氧空位。拉曼光谱未检测到其他信号,这证明了纯脊髓铁氧体的存在。通过 Tauc 图获得了能带隙值,所有钴铁氧体纳米粒子的能带隙值分别为 2.84、2.75 和 2.89 eV。通过 SEM 和 TEM 图像观察了合成的钴铁氧体纳米材料的形貌。与其他 SEM 图像相比,在 400°C 下退火的产物显示出更好的形态,团聚程度最小。此外,磁性纳米粒子的 SAED 图案证实了 CoFeO 纳米粒子的多晶性质。CF2 样品的比表面积为 5.082 m2/g,CF2 样品的孔体积和直径分别为 0.013 cc/g 和 3.937 nm。然后,在 400°C 下退火的产物表现出最高的活性,在 80 分钟内降解了 74%的阳离子染料,即使在三个循环中也表现出良好的稳定性。

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