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晶格校正在原子探针断层成像技术中的应用:迈向真正的三维原子显微镜。

Lattice rectification in atom probe tomography: toward true three-dimensional atomic microscopy.

机构信息

Australian Centre for Microscopy and Microanalysis, The University of Sydney, NSW 2006, Australia.

出版信息

Microsc Microanal. 2011 Apr;17(2):226-39. doi: 10.1017/S1431927610094535. Epub 2011 Mar 8.

Abstract

Atom probe tomography (APT) represents a significant step toward atomic resolution microscopy, analytically imaging individual atoms with highly accurate, though imperfect, chemical identity and three-dimensional (3D) positional information. Here, a technique to retrieve crystallographic information from raw APT data and restore the lattice-specific atomic configuration of the original specimen is presented. This lattice rectification technique has been applied to a pure metal, W, and then to the analysis of a multicomponent Al alloy. Significantly, the atoms are located to their true lattice sites not by an averaging, but by triangulation of each particular atom detected in the 3D atom-by-atom reconstruction. Lattice rectification of raw APT reconstruction provides unprecedented detail as to the fundamental solute hierarchy of the solid solution. Atomic clustering has been recognized as important in affecting alloy behavior, such as for the Al-1.1 Cu-1.7 Mg (at. %) investigated here, which exhibits a remarkable rapid hardening reaction during the early stages of aging, linked to clustering of solutes. The technique has enabled lattice-site and species-specific radial distribution functions, nearest-neighbor analyses, and short-range order parameters, and we demonstrate a characterization of solute-clustering with unmatched sensitivity and precision.

摘要

原子探针层析术(APT)是向原子分辨率显微镜迈进的重要一步,能够对单个原子进行高度准确、尽管不完美的化学识别和三维(3D)位置信息分析。在这里,提出了一种从原始 APT 数据中提取晶体学信息并恢复原始样品晶格特定原子结构的技术。这种晶格校正技术已经应用于纯金属 W,然后应用于多组分 Al 合金的分析。重要的是,原子是通过对在 3D 原子逐个重建中检测到的每个特定原子进行三角测量,而不是通过平均化来定位到其真实晶格位置。原始 APT 重建的晶格校正提供了对固溶体基本溶质层次结构的前所未有的细节。原子聚集已被认为对合金行为有重要影响,例如在本研究中调查的 Al-1.1Cu-1.7Mg(原子%),其在时效的早期阶段表现出显著的快速硬化反应,与溶质的聚集有关。该技术实现了晶格位和物种特异性的径向分布函数、最近邻分析和短程有序参数,并且我们展示了对溶质聚集的特征描述,具有无与伦比的灵敏度和精度。

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