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Enhancing superconducting properties of MgB_2 pellets by addition of amorphous magnetic Ni-Co-B nanoparticles

机译:通过添加非晶磁性Ni-Co-B纳米颗粒增强MgB_2颗粒的超导性能

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Amorphous magnetic Ni-Co-B nanoparticles with an average size of 5 nm were added to precursor powders of MgB2 superconductor. The preparation procedure for MgB2 pellets was optimized for obtaining the best critical current density (Jc) at elevated magnetic fields. Addition of Ni-Co-B decreases the Jc for heat treatment of precursor powders at 650 ° C. Heat treatments at 770 ° C and higher improve Jc at 20 and 5 K. This improvement occurs at both temperatures through the increase of the effective connectivity between MgB2 crystals. Vortex pinning was enhanced at 5 K, but not at 20 K. Ni-Co-B nanoparticles reacted with Mg in heat treatments above 730 ° C, forming Mg2Ni and MgCo2 nanoparticles. Ni-Co-B addition was associated with lower oxygen content in MgB2, indicating that reduction of MgO content is the mechanism for improvement of grain connectivity. Decomposition of magnetic Ni-Co-B nanoparticles results mostly in non-magnetic nanoparticles, so magnetic pinning did not occur in our samples.
机译:将平均粒径为5 nm的非晶态磁性Ni-Co-B纳米颗粒添加到MgB2超导体的前驱体粉末中。优化了MgB2颗粒的制备程序,以便在升高的磁场下获得最佳的临界电流密度(Jc)。 Ni-Co-B的添加会降低前体粉末在650°C时的热处理Jc。770°C和更高温度下的热处理会提高20 K和5 K时的Jc。通过提高有效连接性,在两种温度下都会出现这种改善在MgB2晶体之间。涡旋钉扎在5 K时增强,但在20 K时不增强。Ni-Co-B纳米颗粒在730°C以上的热处理中与Mg反应,形成Mg2Ni和MgCo2纳米颗粒。 Ni-Co-B的添加与MgB2中较低的氧含量有关,表明MgO含量的降低是改善晶粒连通性的机制。磁性Ni-Co-B纳米粒子的分解主要产生非磁性纳米粒子,因此在我们的样品中未发生磁性钉扎。

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