Octahedron-shaped nano FeCo2O4 phase materials: Wet chemical synthesis and characterization studies

Q3 Materials Science Current Nanomaterials Pub Date : 2022-05-16 DOI:10.2174/2405461507666220516093922
S. Balamurugan, N. Giribha, S. A. Ashika
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引用次数: 2

Abstract

Amongst the different spinel cobaltites investigated to date, the FeCo2O4 phase has been relatively less studied in detail despite the potential applications in several areas. As the nanostructured spinels are sensitive to the processing conditions, we have extended our research interest in FeCo2O4 phase materials. (i)To synthesize the FeCo2O4 nanomaterials by different approaches using different precursors and (ii) To investigate the structural, thermal, optical, and micro-structural properties of different materials by various characterization techniques. Different approaches such as hexamine-assisted combustion synthesis, co-precipitation, and solvothermal methods were employed to obtain FeCo2O4 nanomaterials using different precursors. The XRD pattern of the as-prepared product of the solvothermal method is significantly different from other processed as-prepared products. The annealed FeCo2O4 materials obtained by co-precipitation using nitrates and/or chlorides showed nearly a single phase of FeCo2O4 nanomaterials. The phase formation of FeCo2O4 materials is sensitive to the presently employed synthesis conditions. The XRD patterns confirmed the deficient crystalline nature of the as-prepared materials produced by sol-gel combustion and co-precipitation methods. The annealed materials obtained by the co-precipitation using nitrates and chlorides showed nearly a singleFeCo2O4 phase. The observed particle sizes of the FeCo2O4 phase materials are octahedral shaped with different sizes of 89 to 344 nm. The optical property studied using the FT-IR technique shows IR bands at 500 ~ 630 cm-1.
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八面体型纳米FeCo2O4相材料:湿法合成及表征研究
在迄今为止研究的不同尖晶石钴酸盐中,尽管FeCo2O4相在几个领域有潜在的应用,但其详细研究相对较少。由于纳米结构尖晶石对加工条件敏感,我们扩大了对FeCo2O4相材料的研究兴趣。(i) 使用不同的前体通过不同的方法合成FeCo2O4纳米材料,以及(ii)通过各种表征技术研究不同材料的结构、热、光学和微观结构特性。采用六胺辅助燃烧合成、共沉淀和溶剂热法等不同方法,使用不同的前体制备了FeCo2O4纳米材料。溶剂热法的制备产物的XRD图谱与其他加工的制备产品显著不同。通过使用硝酸盐和/或氯化物共沉淀获得的退火的FeCo2O4材料显示出几乎单相的FeCo2O3纳米材料。FeCo2O4材料的相形成对目前使用的合成条件是敏感的。XRD图谱证实了通过溶胶-凝胶燃烧和共沉淀方法制备的材料的结晶性质不足。通过使用硝酸盐和氯化物的共沉淀获得的退火材料显示出几乎单一的FeCo2O4相。观察到的FeCo2O4相材料的颗粒尺寸是具有89至344nm的不同尺寸的八面体形状。用FT-IR技术研究的光学性质显示在500~630cm-1的红外波段。
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来源期刊
Current Nanomaterials
Current Nanomaterials Materials Science-Materials Science (miscellaneous)
CiteScore
1.60
自引率
0.00%
发文量
53
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