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Super adsorption capability from amorphousization of metal oxide nanoparticles for dye removal

机译:金属氧化物纳米粒子的非晶化具有超强吸附能力,可去除染料

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摘要

Transitional metal oxide nanoparticles as advanced environment and energy materials require very well absorption performance to apply in practice. Although most metal oxides are based on crystalline, high activities can also be achieved with amorphous phases. Here, we reported the adsorption behavior and mechanism of methyl blue (MB) on the amorphous transitional metal oxide (Fe, Co and Ni oxides) nanoparticles, and we demonstrated that the amorphousization of transitional metal oxide (Fe, Co and Ni oxides) nanoparticles driven by a novel process involving laser irradiation in liquid can create a super adsorption capability for MB, and the maximum adsorption capacity of the fabricated NiO amorphous nanostructure reaches up to 10584.6?mgg?1, the largest value reported to date for all MB adsorbents. The proof-of-principle investigation of NiO amorphous nanophase demonstrated the broad applicability of this methodology for obtaining new super dyes adsorbents.
机译:过渡金属氧化物纳米颗粒作为先进的环境和能源材料,需要非常好的吸收性能才能在实践中应用。尽管大多数金属氧化物都基于晶体,但非晶相也可以实现高活性。在这里,我们报道了甲基蓝(MB)在非晶态过渡金属氧化物(Fe,Co和Ni氧化物)纳米颗粒上的吸附行为和机理,并证明了过渡金属氧化物(Fe,Co和Ni氧化物)纳米颗粒的非晶化通过在液体中进行激光辐照的新工艺驱动,可以产生对MB的超强吸附能力,并且所制备的NiO非晶态纳米结构的最大吸附能力高达10584.6?mgg ?1 ,这是报道的最大值迄今为止,所有MB吸附剂。 NiO非晶态纳米相的原理验证研究表明,该方法在获得新型超级染料吸附剂方面具有广泛的适用性。

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