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Synthesis, transformation and superconductivity of dual phase In-Sn alloy nanoparticles embedded in an Al matrix

机译:嵌入Al基体中的双相In-Sn合金纳米粒子的合成,相变和超导性

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We report the synthesis of nanoembedded biphasic alloy particles of In-Sn near eutectic alloy compositions embedded in an aluminium matrix by rapid solidification processing. Detailed transmission electron microscopy indicates that the two phases present at room temperature in as-synthesized samples are beta and gamma phases with tetragonal and hexagonal crystal structures, respectively. These co-exist with a small amount of single phase In or Sn particles with sizes less than 10 nm. Low temperature magnetization measurements indicate a superconducting transition temperature of 5 K, suggesting complete decomposition of the beta-phase at small sizes and at low temperature. The small particles show type II behavior with a critical field Hc_1 approx = 44 G and two values for Hc_2 of 250 and 1000 G, respectively. These values are considerably lower than those observed in bulk In-Sn alloys.
机译:我们报告了通过快速凝固工艺在铝基体中嵌入In-Sn近共晶合金成分的纳米嵌入式双相合金颗粒的合成。详细的透射电子显微镜检查表明,合成样品在室温下存在的两相分别是具有四方晶体和六方晶体结构的β相和γ相。它们与少量尺寸小于10 nm的单相In或Sn颗粒共存。低温磁化强度测量表明,超导转变温度为5 K,这表明在小尺寸和低温下β相会完全分解。小颗粒显示II型行为,临界场Hc_1约为= 44 G,Hc_2的两个值分别为250和1000G。这些值大大低于在块状In-Sn合金中观察到的值。

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