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Magnetically separable Zn1?xCo0.5xMg0.5xFe2O4 ferrites: stable and efficient sunlight-driven photocatalyst for environmental remediation

机译:磁性分离Zn1?XCO0.5xmg0.5xFe2O4铁氧体:用于环境修复的稳定和高效的阳光驱动光催化剂

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Nanomaterials have recently gained significant interest as they are believed to offer an outstanding prospect for use in environmental remediation. Among many possible candidates, due to their useful properties including magnetic nature, wide surface area, and high absorptivity, ferrite materials hold tremendous appeal, allowing them to be used for multifaceted applications. In the present study, using a sol–gel auto combustion process, a magnetically separable Zn _(1? x ) Co _(0.5 x ) Mg _(0.5 x ) Fe _(2) O _(4) ( x = 0.0, 0.25, 0.50, 0.75, 1.0) ferrite with superior photocatalytic activity for dye degradation was manufactured. Rietveld refinement and FTIR studies confirm that a single-phase cubic spinel system was built for all samples with crystallite sizes of 34–57 nm. VSM has determined the magnetic properties of the samples at room temperature. With the introduction of Mg ~(2+) and Co ~(2+) in the Zn ferrites, a transformation from the soft superparamagnetic activity to the hard ferromagnetic character was reported. Considering the band structure in the visible region, the photocatalytic activities of the Zn _(1? x ) Co _(0.5 x ) Mg _(0.5 x ) Fe _(2) O _(4) ferrites for the degradation of the MB dye under natural sunlight were investigated. Zn _(0.25) Co _(0.375) Mg _(0.375) Fe _(2) O _(4) showed an efficiency of degradation of 99.23% for MB dye with a quick 40 min irradiation period with high reusability of up to four cycles.
机译:纳米材料最近获得了重大兴趣,因为他们被认为为环境修复提供了杰出的前景。在许多可能的候选者中,由于其有用的性质,包括磁性,宽表面积和高吸收率,铁氧体材料具有巨大的吸引力,使它们可用于多方面的应用。在本研究中,使用溶胶 - 凝胶自动燃烧过程,磁性可分离的Zn _(1≤x)Co _(0.5×)Mg _(0.5×)Fe _(2)O _(4)(x = 0.0制造了具有卓越的光催化活性的0.25,0.50,0.75,1.0)制造用于染料降解的光催化活性。 RIETVELD改进和FTIR研究证实,为所有样品构建了单相立方尖晶石系统,具有34-57nm的微晶尺寸。 VSM确定在室温下样品的磁性。随着Zn铁氧体中的Mg〜(2+)和CO〜(2+)的引入,报道了从软超顺磁性活性转化为硬铁磁性特征。考虑到可见区域中的频带结构,Zn _(1×x)Co _(0.5×)Mg _(0.5×)Fe _(0.5×)Fe _(2)O _(4)铁氧体的光催化活性用于MB的降级研究了自然阳光下的染料。 Zn _(0.25)CO _(0.375)Mg _(0.375)Fe _(2)O _(4)_(4)显示了MB染料的降解效率,具有快速40分钟的照射期,可重复使用高达四个循环。

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