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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Microwave-assisted synthesis and high dechlorination activity of magnetic FeNi broom-like nanostructures
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Microwave-assisted synthesis and high dechlorination activity of magnetic FeNi broom-like nanostructures

机译:FeNi扫帚状磁性纳米结构的微波辅助合成和高脱氯活性

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A three-dimensional (3D) broom-like nanostructured magnetic FeNi catalyst was synthesized using inexpensive Fe and Ni as precursors in a controllable microwave-assisted route. In this 3D broom-like nanostructure, the length of an FeNi nanorod, which serves as a building block, depends on the molar content of Fe. With a decrease in the Fe content from 100 to 45% in the Fe _xNi_(96-x) system, the length varies from 8 μm to 1 μm, which is corroborated by SEM, TEM, XRD, EDS and XPS. The magnetic behavior measurement results show that the magnetic saturation and coercivity are strongly influenced by the length of the nanorods and the Fe content. The sample of Fe nanorods gives a maximum magnetization saturation at 196 emu g ~(-1), and a maximum coercivity of 241.23 Oe is obtained for Fe _(78)Ni_(22). These economical 3D FeNi broom-like nanostructures, with large surface areas and dispersed active sites, can dramatically facilitate the diffusion and transportation of a reactant to improve the reactivity. In particular, Fe_(89)Ni_(11) broom-like nanostructures exert an excellent reactivity towards the reductive dechlorination of 1,1,2,2-tetrachloroethane.
机译:以廉价的铁和镍为前体,以可控的微波辅助途径合成了三维(3D)扫帚状纳米结构磁性FeNi催化剂。在这种3D扫帚状纳米结构中,用作构造单元的FeNi纳米棒的长度取决于Fe的摩尔含量。随着Fe _xNi_(96-x)系统中的Fe含量从100%降低到45%,长度从8μm到1μm不等,这由SEM,TEM,XRD,EDS和XPS证实。磁性能测量结果表明,磁饱和度和矫顽力受纳米棒长度和Fe含量的强烈影响。 Fe纳米棒样品的最大磁化饱和度为196 emu g〜(-1),Fe_(78)Ni_(22)的最大矫顽力为241.23 Oe。这些经济的3D FeNi扫帚状纳米结构具有较大的表面积和分散的活性位点,可以极大地促进反应物的扩散和运输,从而提高反应性。特别地,Fe_(89)Ni_(11)扫帚状纳米结构对1,1,2,2-四氯乙烷的还原脱氯表现出极好的反应性。

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