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Long Period Superlattice Cu3Au II

机译:长期超晶格Cu3Au II

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摘要

A detailed study of the Cu-Au system between 25–50 at. % Au was made to determine the range of stability of the long period superlattices found in this system. The single-crystal thin film technique was used to make the samples, and the structure was determined using electron diffraction. It was found that a one-dimensional long period superlattice exists as an equilibrium phase from about 30% Au, substantiating Scott's original observation, to 60% Au. From about 30% to 38% Au, the antiphase structure is the Cu3Au II type, while at higher Au content, the structure is the CuAu II type. The domain size M was found to decrease continuously from a value of about 10 at 30% Au to 5 at 50% Au, regardless of the change in structure when crossing the phase region between Cu3Au and CuAu. Small amounts of Al added to a sample having the CuAu II structure and an Au content of 40%, decreased the domain size in a manner identical to that observed for stoichiometric CuAu II. The addition of Al to a sample having an Au content of 27.5%, where an antiphase structure is not observed, resulted in the formation of an antiphase structure for which the period could be predicted by our present theory. Qualitative arguments are presented to explain the appearance of these structures. Particular emphasis is placed on the role of the antiphase domain boundary energy and the electron energy in determining the formation and period of the superlattice.
机译:Cu-Au系统在25–50 at之间的详细研究。用%Au确定在该系统中发现的长期超晶格的稳定性范围。使用单晶薄膜技术制造样品,并使用电子衍射确定结构。发现一维的长期超晶格作为平衡相存在,从约30%的金(证实Scott的原始观察结果)到60%的金。在约30%至38%的Au中,反相结构为Cu3Au II型,而在较高的Au含量下,该结构为CuAu II型。发现当跨过Cu3Au和CuAu之间的相区域时结构改变时,畴尺寸M从30%Au处的约10的值连续减小到50%Au处的5的值。向具有CuAu II结构且Au含量为40%的样品中添加少量Al,可以减小畴尺寸,其方式与化学计量CuAu II所观察到的相同。向具有27.5%的Au含量的样品中添加Al,其中未观察到反相结构,导致形成反相结构,该相结构可以通过我们的当前理论来预测。提出定性论据来解释这些结构的外观。特别强调的是反相畴边界能和电子能在确定超晶格的形成和周期方面的作用。

著录项

  • 来源
    《Journal of Applied Physics》 |1962年第11期|共7页
  • 作者

    Toth Robert S.; Sato Hiroshi;

  • 作者单位

    Scientific Laboratory, Ford Motor Company, Dearborn, Michigan;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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