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Freeze drying technique to prepare doped nanosized B powder

机译:冷冻干燥技术制备掺杂纳米B粉

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In this study, we propose a new approach for the large-scale production of doped nanosized boron powder, which is also useful for manufacturing a wide choice of compounds. This work deals with synthesis of B with cryogenic freezing and lyophilization-based technique, evaluation of its structural properties, and study of superconducting properties of MgB2 wires manufactured with two types of B powder. This new process begins with dissolution of B2O3 precursor in hot water together with doping agents, which can be organic macromolecule or nanosized inorganic compound. This hot solution was then cryogenically frozen in liquid N-2 and finally lyophilized. Nanostructured and doped boron powders were produced by magnesiothermic reaction of the lyophilized precursor (B2O3). After the structural and morphological characterization, these boron powders were used for preparation of MgB2 phase and MgB2-based conductors. Boron and MgB2 powders were morphologically analyzed by SEM technique to determine grain size distribution. Phase formation was studied and confirmed by XRD analysis. Short pieces (10 m long) of MgB2 superconducting wires were manufactured by ex situ PIT technique and characterized by magnetic and transport measurements. Results reported in this study confirm the suitability of the proposed method to produce nanostructured and doped boron powder. This nanosized boron can be used also in different fields where doping and nanosizing are fundamental and required characteristics.
机译:在这项研究中,我们提出了一种大规模生产掺杂的纳米级硼粉的新方法,该方法也可用于制造多种化合物。这项工作涉及利用低温冷冻和冻干技术合成B,评估其结构性能以及研究用两种B型粉末制造的MgB2线的超导性能。这一新过程始于将B2O3前体与掺杂剂一起溶解在热水中,掺杂剂可以是有机大分子或纳米级无机化合物。然后将该热溶液在液体N-2中低温冷冻,并最终冻干。纳米结构和掺杂的硼粉是通过冻干前体(B2O3)的镁热反应生成的。经过结构和形态表征后,这些硼粉被用于制备MgB2相和MgB2基导体。硼和MgB2粉末通过SEM技术进行了形态分析,以确定粒度分布。研究了相形成并通过XRD分析证实。 MgB2超导线材的短片(10 m长)是通过异位PIT技术制造的,并通过磁学和输运测量进行了表征。这项研究中报道的结果证实了该方法适用于生产纳米结构和掺杂的硼粉。这种纳米硼还可以用于掺杂和纳米化是基本和必需特性的不同领域。

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