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首页> 外文期刊>Angewandte Chemie >Controlled-Atmosphere Flame Fusion Single-Crystal Growth of Non-Noble fcc, hcp, and bcc Metals Using Copper, Cobalt, and Iron
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Controlled-Atmosphere Flame Fusion Single-Crystal Growth of Non-Noble fcc, hcp, and bcc Metals Using Copper, Cobalt, and Iron

机译:使用铜,钴和铁的无限FCC,HCP和BCC金属的控制气氛火焰融合单晶生长

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摘要

The growth of noble-metal single crystals via the flame fusion method was developed in the 1980s. Since then, there have been no major advancements to the technique until the recent development of the controlled-atmosphere flame fusion (CAFF) method to grow non-noble Ni single crystals. Herein, we demonstrate the generality of this method with the first preparation of fcc Cu as well as the first hcp and bcc single crystals of Co and Fe, respectively. The high quality of the single crystals was verified using scanning electron microscopy and Laue X-ray backscattering. Based on Wulff constructions, the equilibrium shapes of the single-crystal particles were studied, confirming the symmetry of the fcc, hcp, and bcc single-crystal lattices. The low cost of the CAFF method makes all kinds of high-quality non-noble single crystals independent of their lattice accessible for use in electrocatalysis, electrochemistry, surface science, and materials science.
机译:通过火焰融合方法的贵金属单晶的生长在20世纪80年代开发。 从那时起,直到最近的控制气氛火焰融合(CAFF)方法生长非贵族Ni单晶的近期发展,就没有重大进展。 在此,我们分别证明了该方法的一般性,首先制备FCC Cu以及Co和Fe的第一HCP和BCC单晶。 使用扫描电子显微镜和Laue X射线反向散射来验证单晶的高质量。 基于WULFF构造,研究了单晶颗粒的平衡形状,确认FCC,HCP和BCC单晶格子的对称性。 CAFF法的低成本使各种高质量的非贵宾单晶无关,可用于可用于电殖分析,电化学,表面科学和材料科学的格子。

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