Structural characterization and tuning of magnetic properties of CoVδFe2−δO4 (0.0 ≤ δ ≤ 0.9) nanomaterials synthesized via a modified sol–gel autocombustion method

IF 2.5 3区 化学 Q2 CHEMISTRY, MULTIDISCIPLINARY
Anagha B. Patil and Rabi N. Panda
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Abstract

We report magnetic properties of CoVδFe2−δO4 nanomaterials synthesized via a modified sol–gel autocombustion method. Lattice parameters obtained from X-ray diffraction (XRD) studies varied from 8.348 to 8.285 Å for δ = 0.0–0.9. Crystallite sizes estimated using Williamson–Hall (W–H) plots were found to be in the range of 52–30 nm (δ = 0.0–0.9). Lattice strain varied from 1.34 × 10−3 to 2.00 × 10−3 for δ = 0.0–0.9. Fourier transform infrared (FTIR) studies revealed peak positions in the ranges of 589.2–602.9 and 409.3–419.5 cm−1 for tetrahedral (Td) and octahedral (Oh) coordination, respectively. Raman spectra showed peaks corresponding to T2g(3), Eg(2), Eg(1), T2g(2), T2g(1), A1g(2) and A1g(1) modes. Particle sizes obtained from field emission scanning electron microscopy (FESEM) analysis varied from 56 to 34 nm for δ = 0.0–0.9. Values of saturation magnetization (Ms) showed significant variation from 82.5 to 47.3 emu g−1 for δ = 0.0–0.9. Coercivity (Hc) values (at 300 K) decreased from 1180 (δ = 0.0) to 886 Oe (δ = 0.9). The estimated values of Ms and Hc (at 5 K) varied from 74.8 to 48.9 emu g−1 (δ = 0.0 to 0.9) and from 7772 to 7078 Oe (δ = 0.0 to 0.9), respectively. XPS study confirmed the redistribution of Co2+ and Fe3+ ions in Oh and Td sites, agreeing well with the magnetic behaviour. The observed decrease in Hc values were also related to a decrease in anisotropy constant (K1), i.e. from 1.44 × 104 to 1.19 × 104 J m−3 for δ = 0.0–0.9.

Abstract Image

通过改良溶胶-凝胶自燃烧法合成的 CoVδFe2-δO4 (0.0 ≤ δ ≤ 0.9) 纳米材料的结构表征和磁性调谐
本文报道了采用溶胶-凝胶自燃烧法合成的CoVδFe2−δO4纳米材料的磁性能。x射线衍射(XRD)研究得到的晶格参数变化范围为8.348 ~ 8.285 Å, δ = 0.0 ~ 0.9。使用Williamson-Hall (W-H)图估计的晶体尺寸在52-30 nm (δ = 0.0-0.9)之间。当δ = 0.0 ~ 0.9时,晶格应变变化范围为1.34 × 10−3 ~ 2.00 × 10−3。傅里叶变换红外(FTIR)研究表明,四面体(Td)和八面体(Oh)的配位峰位置分别在589.2 ~ 602.9和409.3 ~ 419.5 cm−1之间。拉曼光谱的峰对应于T2g(3)、Eg(2)、Eg(1)、T2g(2)、T2g(1)、A1g(2)和A1g(1)模式。从场发射扫描电镜(FESEM)分析得到的颗粒尺寸在56 ~ 34 nm之间,δ = 0.0 ~ 0.9。当δ = 0.0 ~ 0.9时,饱和磁化强度(Ms)在82.5 ~ 47.3 emu g−1之间变化显著。300 K时矫顽力(Hc)值由1180 (δ = 0.0)降至886 Oe (δ = 0.9)。Ms和Hc(在5 K时)的估计值分别为74.8 ~ 48.9 emu g−1 (δ = 0.0 ~ 0.9)和7772 ~ 7078 Oe (δ = 0.0 ~ 0.9)。XPS研究证实了Co2+和Fe3+离子在Oh和Td位点的重新分布,与磁性行为很好地吻合。观测到的Hc值的降低也与各向异性常数(K1)的降低有关,即δ = 0.0-0.9时,各向异性常数从1.44 × 104 J m−3降低到1.19 × 104 J m−3。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
New Journal of Chemistry
New Journal of Chemistry 化学-化学综合
CiteScore
5.30
自引率
6.10%
发文量
1832
审稿时长
2 months
期刊介绍: A journal for new directions in chemistry
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