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Sol-Gel-Derived Single-Crystal Alumina Coatings with Vermicular Structure

机译:具有蠕虫状结构的溶胶凝胶衍生的单晶氧化铝涂层

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摘要

Alumina sols were spin-coated on {0001} (c-plane) sapphire substrates. Heat treatment in air at temperatures varying between 1100° and 1400℃ resulted in epitaxial conversion of the coating toα-alumina. Seeded single-crystal conversion could be achieved at temperatures as low as 1025℃ at longer annealing times (18 h). The converted coatings were crack free, and exhibited a porous, vermicular microstructure that was attributed to the negative volume change during the y to a alumina phase change, coupled with the volume constraint of the underlying sapphire substrate. Isolated regions of the coating that had delaminated from the substrate did not convert to {0001} sapphire, but instead remained polycrystalline after heat treatment. Single-crystal islands that were not c-plane oriented were occasionally observed at shorter times. It is suggested that such regions resulted from the random nucleation of α-grains with a more rapid growth rate in the direction perpendicular to the substrate. The epitaxial conversion of alumina sol-gel coatings provides a potentially convenient method for generating patterned, single-crystal ceramic substrates for a variety of applications.
机译:将氧化铝溶胶旋涂在{0001}(c面)蓝宝石衬底上。在空气中在1100°和1400℃之间变化的热处理导致涂层外延转化为α-氧化铝。在低至1025℃的温度下,较长的退火时间(18小时)可以实现种子单晶转化。转换后的涂层无裂纹,并呈现出多孔的蠕虫微观结构,这归因于在y到氧化铝相变期间y的负体积变化,以及下面的蓝宝石衬底的体积约束。从基底剥离的涂层的隔离区域没有转化为{0001}蓝宝石,而是在热处理后保持多晶。有时在较短的时间内观察到非c面取向的单晶岛。提示这些区域是由于α-晶粒的随机成核而形成的,在垂直于基板的方向上具有更快的生长速率。氧化铝溶胶-凝胶涂层的外延转化提供了一种潜在方便的方法,可用于生成用于各种应用的带图案的单晶陶瓷基板。

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    Department of Materials Science and Engineering and Center for Advanced Materials and Nanotechnology,Lehigh University, Bethlehem, Pennsylvania 18015;

    rnDepartment of Materials Science and Engineering and Center for Advanced Materials and Nanotechnology,Lehigh University, Bethlehem, Pennsylvania 18015,Department of Materials, Imperial College, London SW7 2AZ, U.K;

    rnDepartment of Materials Science and Engineering and Center for Advanced Materials and Nanotechnology,Lehigh University, Bethlehem, Pennsylvania 18015;

    rnDepartment of Materials Science and Engineering and Center for Advanced Materials and Nanotechnology,Lehigh University, Bethlehem, Pennsylvania 18015;

    rnDepartment of Materials Science and Engineering and Center for Advanced Materials and Nanotechnology,Lehigh University, Bethlehem, Pennsylvania 18015;

  • 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
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  • 入库时间 2022-08-17 13:39:17

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