Center for Interdisciplinary Research, Tohoku University, 6-3 Aoba, Aramaki, Sendai 980-8578, Japan.
J Phys Condens Matter. 2011 May 4;23(17):175303. doi: 10.1088/0953-8984/23/17/175303. Epub 2011 Apr 8.
The effects of Pd and Pt, which are known quasicrystal (QC)-forming elements, on the local atomic structure in Zr(70)Cu(30) glassy alloys are investigated. A QC phase precipitates from a glassy phase above a certain temperature by a cooperative-like motion of icosahedral clusters. Quasicrystallization is accompanied by a significant change in the local environment around the Zr atoms and a slight change around the noble metal. However, the local environment around the Cu atoms remains almost the same during QC formation. It is suggested that two types of icosahedral polyhedra exist in the glassy state: one has a relatively perfect icosahedral structure formed around the Zr atoms. The other is in a distorted state around the Cu atoms. We speculate that the medium-range order (i.e. QC nucleus) has a Zr-centered icosahedral cluster as its core, and the QC grows via aggregation of possible clusters in the initial stage. Pd or Pt atoms stabilize and/or connect individual Zr-centered icosahedral clusters, facilitating the formation of the nucleus and growth of the QC phase.
研究了已知准晶(QC)形成元素 Pd 和 Pt 对 Zr(70)Cu(30)玻璃态合金中局部原子结构的影响。在一定温度以上,通过二十面体团簇的协同运动,从玻璃相中析出 QC 相。准晶形成伴随着 Zr 原子周围局部环境的显著变化和贵金属周围的轻微变化,但 Cu 原子周围的局部环境在 QC 形成过程中几乎保持不变。据推测,玻璃态存在两种类型的二十面体多面体:一种是在 Zr 原子周围形成的具有相对完美的二十面体结构。另一种是在 Cu 原子周围处于扭曲状态。我们推测,中程有序(即 QC 核)以 Zr 为中心的二十面体团簇为核心,QC 通过初始阶段可能团簇的聚集而生长。Pd 或 Pt 原子稳定和/或连接单个 Zr 为中心的二十面体团簇,有利于核的形成和 QC 相的生长。