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Synthesis of 3D nanostructured metal alloy of immiscible materials induced by megahertz-repetition femtosecond laser pulses

机译:兆赫重复飞秒激光脉冲诱导的不溶混材料的3D纳米结构金属合金的合成

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摘要

In this work, we have proposed a concept for the generation of three-dimensional (3D) nanostructured metal alloys of immiscible materials induced by megahertz-frequency ultrafast laser pulses. A mixture of two microparticle materials (aluminum and nickel oxide) and nickel oxide microparticles coated onto an aluminum foil have been used in this study. After laser irradiation, three different types of nanostructure composites have been observed: aluminum embedded in nickel nuclei, agglomerated chain of aluminum and nickel nanoparticles, and finally, aluminum nanoparticles grown on nickel microparticles. In comparison with current nanofabrication methods which are used only for one-dimensional nanofabrication, this technique enables us to fabricate 3D nanostructured metal alloys of two or more nanoparticle materials with varied composite concentrations under various predetermined conditions. This technique can lead to promising solutions for the fabrication of 3D nanostructured metal alloys in applications such as fuel-cell energy generation and development of custom-designed, functionally graded biomaterials and biocomposites.
机译:在这项工作中,我们提出了一种通过兆赫兹频率超快激光脉冲感应产生不溶混材料的三维(3D)纳米结构金属合金的概念。这项研究使用了两种微粒材料(铝和氧化镍)和涂在铝箔上的氧化镍微粒的混合物。激光照射后,已观察到三种不同类型的纳米结构复合材料:嵌入镍核中的铝,铝和镍纳米颗粒的凝聚链,最后是在镍微粒上生长的铝纳米颗粒。与仅用于一维纳米制造的当前纳米制造方法相比,该技术使我们能够在各种预定条件下制造具有不同复合物浓度的两种或更多种纳米颗粒材料的3D纳米结构金属合金。这项技术可以为制造3D纳米结构金属合金提供有希望的解决方案,例如燃料电池能量产生以及定制设计,功能分级的生物材料和生物复合材料的开发。

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