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首页> 外文期刊>Advanced materials interfaces >Interfacial Thermal Conductance between Mechanically Exfoliated Black Phosphorus and SiO x xx : Effect of Thickness and Temperature
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Interfacial Thermal Conductance between Mechanically Exfoliated Black Phosphorus and SiO x xx : Effect of Thickness and Temperature

机译:机械剥离黑色磷和SIO之间的界面热敏 x x x :厚度和温度的影响

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摘要

> Black phosphorus (BP) is one of new 2D materials that have attracted wide attention. This work reports the interfacial thermal conductance between BP flake and SiO x using Raman spectroscopy. From 293 K down to the 223 K, eight BP flakes in a thickness range of 16.6–113.7 nm are characterized. At 293 K, the largest interfacial thermal conductance is 1.14 × 10 8 W m ?2 K ?1 for a 82.1 nm thick BP flake, and the smallest one is 2.17 × 10 7 W m ?2 K ?1 for a 26.6 nm thick BP flake. Such large interfacial thermal conductance can be attributed to the excellent interface contact and strong phonon coupling between BP and SiO x . The measured interfacial thermal conductance has a one‐fold up to around four‐fold increase with decreased temperature from 293 to 223 K, which is a result of thermal‐expansion‐mismatch induced variation in the morphology of BP flakes. Additionally, it demonstrates no thickness‐dependent behavior. It is speculated the intrinsic thickness dependence is weak and is overshadowed by the large variation in the interface contact of different samples. As a new 2D material, BP shows great potential to be a thermal interface material for heat dissipation in electronics.
机译: > 黑色磷(BP)是新的2D材料之一,它引起了广泛的关注。这项工作报告了BP薄片和SiO之间的界面热传导 x 使用拉曼光谱。从293 k到223 k,厚度范围为16.6-113.7 nm的八个BP薄片。在293 k时,最大的界面导热率为1.14×10 8 w ?2 K. ?1 对于82.1nm厚的BP薄片,最小的一个是2.17×10 7 w ?2 K. ?1 对于26.6 nm厚的BP薄片。这种大的界面导热率可归因于BP和SIO之间的优异界面接触和强子耦合 x 。测量的界面热敏电导的倍数高达四倍,随着293至223k的降低,温度降低,这是热膨胀 - 失配诱导的BP薄片形态变异的结果。另外,它没有依赖于厚度依赖性行为。猜测本质厚度依赖性较弱,并且通过不同样品的界面接触的大变化而被掩盖。作为新的2D材料,BP显示出具有电子设备散热的热界面材料的巨大潜力。

著录项

  • 来源
    《Advanced materials interfaces》 |2017年第16期|共1页
  • 作者单位

    Department of Mechanical EngineeringIowa State University2025 Black Engineering Building Ames IA 50010 USA;

    Department of Mechanical EngineeringIowa State University2025 Black Engineering Building Ames IA 50010 USA;

    Department of Mechanical EngineeringIowa State University2025 Black Engineering Building Ames IA 50010 USA;

    Automotive Engineering CollegeShanghai University of Engineering Science333 Longteng Road Shanghai 201620 P. R. China;

    Department of Mechanical EngineeringIowa State University2025 Black Engineering Building Ames IA 50010 USA;

    Department of Mechanical EngineeringIowa State University2025 Black Engineering Building Ames IA 50010 USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 特种结构材料;
  • 关键词

    black phosphorus; interfacial thermal conductance; Raman spectroscopy; thermal expansion;

    机译:黑色磷;界面热敏;拉曼光谱;热膨胀;

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