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Nanopore Characterization and Optical Modeling of Transparent Polycrystalline Alumina

机译:透明多晶氧化铝的纳米孔表征和光学建模

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摘要

Production of transparent ceramics has become a topic of resurgent interest in recent years, with its promise of near-net shaping appealing to applications ranging from biomedicine to solar energy. However, the mechanisms governing ceramic transparency, translucency, and opaqueness are not entirely understood. Models of both grain boundary and pore scattering have been proposed, but too often without sufficient experimental corroboration. An extensive experimental analysis of transparent alumina samples is presented, establishing a first direct link between the observed transparency, defect size, and porosity. Given the unprecedented experimental detail from the full 3D pore reconstruction from the FIB tomography, how to correctly interpret the experimentally observed transparency is additionally shown. The unprecedented experimental and theoretical agreement for the first time identifies the relative contributions of different scattering mechanisms, thereby paving the way forward for microstructural tuning of transparent polycrystalline alumina.
机译:近年来,透明陶瓷的生产已成为引起人们关注的话题,其近净成形的前景吸引了从生物医学到太阳能的各种应用。但是,控制陶瓷透明性,半透明性和不透明性的机制还不完全清楚。已经提出了晶界和孔隙散射的模型,但是常常没有足够的实验证实。介绍了对透明氧化铝样品的广泛实验分析,在观察到的透明度,缺陷尺寸和孔隙率之间建立了直接的直接联系。鉴于FIB断层扫描从完整的3D孔重建中获得了前所未有的实验细节,另外显示了如何正确解释实验观察到的透明度。前所未有的实验和理论共识首次确定了不同散射机制的相对作用,从而为透明多晶氧化铝的微结构调整铺平了道路。

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  • 来源
    《Advanced Functional Materials》 |2012年第11期|p.2303-2309|共7页
  • 作者单位

    Powder Technology Laboratory Ecole Polytechnique Fede'rale de Lausanne 1015 Lausanne, Switzerland;

    Powder Technology Laboratory Ecole Polytechnique Fede'rale de Lausanne 1015 Lausanne, Switzerland;

    Interdisciplinary Center for Electron Microscopy Ecole Polytechnique Federale de Lausanne 1015 Lausanne, Switzerland;

    Instituto de Ciencia de Materiales de Madrid CSIC, 28049 Madrid, Spain;

    Department of Materials and Environmental Chemistry Stockholm University 10691 Stockholm, Sweden,Department of Materials Science and Engineering KTH Royal Institute of Technology Ceramic Technology Division 10044, Stockholm, Sweden;

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