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首页> 外文期刊>Particle & Particle Systems Characterization: Measurement and Description of Particle Properties and Behavior in Powders and Other Disperse Systems >Carbon Encapsulation of High Entropy Alloy Nanoparticles with Extraordinary Coercivity and Saturation at Room Temperature
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Carbon Encapsulation of High Entropy Alloy Nanoparticles with Extraordinary Coercivity and Saturation at Room Temperature

机译:高熵合金纳米粒子的碳包封具有非凡的矫顽力和室温饱和度

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Owing to their unique properties and technological potential, high entropy alloys (HEAs) have become the subject of great interest in the materials science community. HEAs consist of more than four principle elements in equimolar ratio so their configurational entropy is intrinsically greater than one-principle element based. The increasing surface energy and chemical tendency toward clustering of like atoms at low dimension, however, make production of HEA-nanoparticles (HEA-NPs) extremely difficult. A facile production of HEA-NPs inside carbon nanotubes and nanoparticles is demonstrated in this work. Electron microscopic and elemental analyses confirm encapsulated to be solution phase; some embrace carbides and form multidomains with chemical composition ranging from quaternary to quinary phase. Multidomains and nonmagnetic centers create hardening thus promoting coercivity significantly at room temperature. Alloying induces electron redistribution into high spin states, accounting for observed high saturation. Configurational entropy of encapsulated HEA-NPs lies on a range comparable with bulk.
机译:由于其独特的性能和技术潜力,高熵合金(HEAS)已成为对材料科学界非常兴趣的主题。艾萨组成的等摩尔比以四个以上的原理元素组成,因此它们的配置熵在本质上大于基于一个原则元素。然而,在低尺寸下增加表面能和对像原子聚类的化学倾向,使得产量极其困难。在这项工作中对碳纳米管和纳米粒子内的Hea-NPS的容纳产生。电子显微镜和元素分析确认封装为溶液阶段;一些拥抱碳化物,形成多弥物瘤,其具有从季度到Quationary的化学成分。多弥物和非磁心中心产生硬化,从而在室温下显着促进矫顽力。合金化将电子再分配到高旋转状态,占观察到的高饱和度。封装HEA-NPS的配置熵在于与散装相当的范围。

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