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Advantages of eutectic alloys for creating catalysts in the realm of nanotechnology-enabled metallurgy

机译:共晶合金在纳米技术冶金领域中产生催化剂的优点

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The nascent field of nanotechnology-enabled metallurgy has great potential. However, the role of eutectic alloys and the nature of alloy solidification in this field are still largely unknown. To demonstrate one of?the promises of liquid metals in the field, we explore a model system of catalytically active Bi-Sn nano-alloys produced using a liquid-phase ultrasonication technique and investigate their phase separation, surface oxidation, and nucleation. The Bi-Sn ratio determines the grain boundary properties and the emergence of dislocations within the nano-alloys. The eutectic system gives rise to the smallest grain dimensions among all Bi-Sn ratios along with more pronounced dislocation formation within the nano-alloys. Using electrochemical COsub2/sub reduction and photocatalysis, we demonstrate that the structural peculiarity of the eutectic nano-alloys offers the highest catalytic activity in comparison with their non-eutectic counterparts. The fundamentals of nano-alloy formation revealed here may establish the groundwork for creating bimetallic and multimetallic nano-alloys.
机译:支持纳米技术的冶金的新生领域具有很大的潜力。然而,本领域中共晶合金和合金凝固性质的作用仍然很大程度上是未知的。为了证明其中一个液体金属的承诺,我们探讨了使用液相超声波技术生产的催化活性Bi-Sn纳米合金的模型系统,并研究了它们的相分离,表面氧化和成核。 Bi-Sn比决定了颗粒边界特性和纳米合金内脱位的出现。共晶系统在所有Bi-Sn比中产生最小的晶粒尺寸,以及纳米合金中更明显的位错形成。使用电化学CO 2 减少和光催化,我们证明了共晶纳米合金的结构特性,与其非共晶对应物相比,具有最高的催化活性。这里揭示的纳米合金形成的基本原理可以建立产生双金属和多金属纳米合金的基础。

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