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从核壳结构出发的铂钴纳米立方体中原子有序排列的奇异行为。

Singular behaviour of atomic ordering in Pt-Co nanocubes starting from core-shell configurations.

作者信息

Aso Kohei, Kobayashi Hirokazu, Yoshimaru Shotaro, Tran Xuan Quy, Yamauchi Miho, Matsumura Syo, Oshima Yoshifumi

机构信息

School of Materials Science, Japan Advanced Institute of Science and Technology, 1-1 Asahidai, Nomi, Ishikawa 923-1292, Japan.

Research Center for Negative Emissions Technologies, Kyushu University, 744 Moto-oka, Nishi-ku, Fukuoka 819-0395, Japan.

出版信息

Nanoscale. 2022 Jul 14;14(27):9842-9848. doi: 10.1039/d2nr01982e.

Abstract

The ordered structure of platinum-cobalt (Pt-Co) alloy nanoparticles has been studied actively because the structure influences their magnetic and catalytic properties. On the Pt-Co alloy's surface, Pt atoms preferentially segregate during annealing to reduce the surface energy. Such surface segregation has been shown to promote the formation of an ordered structure near the surface of Pt-Co thin films. Although this phenomenon seems also useful to control the nanoparticle structure, this has not been observed. Here, we have studied the ordered structure in annealed Pt@Co core-shell nanoparticles using a scanning transmission electron microscope. The nanoparticles were chemically synthesized, and their structural changes after annealing at 600 °C, 700 °C, and 800 °C for 3 h were observed. After being annealed at 600 °C and 800 °C, the particles contained the L1-PtCo ordered structure. The structure seems reasonable considering an initial Pt : Co ratio of ∼4 : 1. However, we found that the L1-PtCo structure was formed near the nanoparticle surface after annealing at 700 °C. The L1-PtCo structure was thought to be formed from the surface segregation of Pt atoms and insufficient diffusion of Pt and Co atoms to mix them in the particle overall.

摘要

铂钴(Pt-Co)合金纳米粒子的有序结构一直是研究热点,因为该结构会影响其磁性能和催化性能。在Pt-Co合金表面,退火过程中Pt原子会优先偏析以降低表面能。这种表面偏析已被证明会促进Pt-Co薄膜表面附近有序结构的形成。尽管这种现象似乎对控制纳米粒子结构也很有用,但尚未被观察到。在此,我们使用扫描透射电子显微镜研究了退火后的Pt@Co核壳纳米粒子的有序结构。这些纳米粒子通过化学合成得到,并观察了它们在600℃、700℃和800℃退火3小时后的结构变化。在600℃和800℃退火后,粒子含有L1-PtCo有序结构。考虑到初始Pt:Co比约为4:1,这种结构似乎是合理的。然而,我们发现700℃退火后,L1-PtCo结构在纳米粒子表面附近形成。L1-PtCo结构被认为是由Pt原子的表面偏析以及Pt和Co原子在粒子整体中扩散不足无法混合而形成的。

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