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首页> 外文期刊>Applied Physics Letters >Organic-component dependent thermal conductivity reduction in ALD/MLD grown ZnO:organic superlattice thin films
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Organic-component dependent thermal conductivity reduction in ALD/MLD grown ZnO:organic superlattice thin films

机译:ALD / MLD中的有机组分依赖性导热率降低ZnO:有机超晶格薄膜

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摘要

Inorganic-organic superlattice (SL) thin films are intriguing candidates for flexible thermoelectric applications; in such SLs, the heat conduction can be efficiently blocked at the inorganic/organic interfaces. Fabrication of these materials using the atomic/molecular layer deposition (ALD/MLD) technique allows precise layer-sequence manipulation. Another unique advantage of ALD/MLD is its capability to yield conformal coatings even on demanding substrates such as textiles. These benefits have been demonstrated in previous works for SL thin films where ZnO serves as the inorganic matrix and hydroquinone as the organic component. In this work, we extend the study to three other organic components, i.e., p-phenylenediamine, terephthalic acid, and 4,4'-oxydianiline, to address the importance of the bonding struc-ture and the density difference at the inorganic/organic interface, and the thickness of the monomolecular organic blocking layer.
机译:无机 - 有机超晶格(SL)薄膜是柔性热电应用的迷恋候选者; 在这样的SLS中,可以在无机/有机界面上有效地封锁热传导。 使用原子/分子层沉积(ALD / MLD)技术的制造这些材料允许精确的层序操纵。 ALD / MLD的另一个独特优势是它即使在诸如纺织品的苛刻的基材上也能产生共形涂层。 在以前的工作中已经证明了这些益处,用于SL薄膜,其中ZnO用作无机基质和氢醌作为有机组分。 在这项工作中,我们将研究扩展到另外三种有机成分,即对苯二胺,对苯二甲酸和4,4'- oxydianiline,以解决粘结结构和无机/有机物的密度差异的重要性 界面,单分子有机阻断层的厚度。

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  • 来源
    《Applied Physics Letters》 |2021年第21期|211903.1-211903.5|共5页
  • 作者单位

    Department of Chemistry and Materials Science Aalto University FI-00076 Espoo Finland;

    University of Virginia Department of Mechanical and Aerospace Engineering Charlottesville Virginia 22904 USA;

    University of Virginia Department of Mechanical and Aerospace Engineering Charlottesville Virginia 22904 USA;

    University of Virginia Department of Mechanical and Aerospace Engineering Charlottesville Virginia 22904 USA University of Virginia Department of Materials Science and Engineering Charlottesville Virginia 22904 USA University of Virginia Department of Physics Charlottesville Virginia 22904 USA;

    Department of Chemistry and Materials Science Aalto University FI-00076 Espoo Finland;

  • 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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