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首页> 外文期刊>Physical review >Time-dependent near-blackbody thermal emission from pulsed laser irradiated vertically aligned carbon nanotube arrays
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Time-dependent near-blackbody thermal emission from pulsed laser irradiated vertically aligned carbon nanotube arrays

机译:脉冲激光垂直排列的碳纳米管阵列的时间依赖性近黑体热发射

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摘要

Vertically aligned carbon nanotube (VACNT) arrays have been reported to be the "blackest" material fabricated to date. They also have a thermal conductivity parallel to the VACNT axis that is much larger than their thermal conductivity perpendicular to the axis. Even so, because of their large length-to-radius ratio, they can be assumed to have the same temperature in any cross section that is perpendicular to the tube axis. Consequently, a pulsed-laser irradiated VACNT array is a candidate to produce fast thermal emissions from the face of a VACNT array grown on a high thermal conductivity substrate. This can be represented as a one-dimensional thermal conductivity problem, where the proximal end of the carbon nanotubes (CNTs) jumps in temperature when irradiated with a pulsed laser, and the tubes then cool by thermal conduction down their axis to their distal end on a substrate where the temperature is fixed. We have measured and calculated analytically the time-dependent infrared (IR) emission from a range of VACNT arrays with different tube lengths grown on aluminum-nitride (A1N) and silicon-dioxide-silicon (SiO_2/Si) substrates. In a parallel effort to characterize their "blackness," we measured the spectral reflectance and emissivity and single-wavelength bidirectional reflectance distribution functions (BRDFs) of these arrays and found these optical characteristics compare well to ideal blackbody behavior. Shorter CNTs exhibit faster cooling than longer nanotubes, and the effective axial conductivity has been determined by comparison between experimental IR signatures and theoretical modeling of expected temperature distributions. Our key finding is that VACNT arrays can act as very fast on-off blackbody sources, which can be useful in many applications requiring such a source.
机译:据报道,垂直排列的碳纳米管(VACNT)阵列是迄今为止制造的“最黑”的材料。它们的平行于VACNT轴的热导率也比垂直于VACNT轴的热导率大得多。即使这样,由于它们的长径比大,可以假定它们在垂直于管轴的任何横截面中都具有相同的温度。因此,脉冲激光照射的VACNT阵列是从高导热率基板上生长的VACNT阵列的表面产生快速热辐射的候选方法。这可以表示为一维热导率问题,其中碳纳米管(CNT)的近端在受到脉冲激光照射时温度会跃升,然后通过沿其轴的热传导将其冷却到远端。温度固定的基板。我们已经测量并计算出了一系列在氮化铝(AlN)和二氧化硅(SiO_2 / Si)衬底上生长的具有不同管长的VACNT阵列随时间变化的红外(IR)发射。在表征其“黑度”的并行工作中,我们测量了这些阵列的光谱反射率和发射率以及单波长双向反射率分布函数(BRDF),并发现这些光学特性与理想的黑体行为相当。较短的CNT比较长的CNT具有更快的冷却速度,并且有效的轴向电导率已通过比较实验IR签名和预期温度分布的理论模型确定。我们的主要发现是VACNT阵列可以充当非常快速的开关黑体源,这在需要这种源的许多应用中很有用。

著录项

  • 来源
    《Physical review 》 |2012年第12期| p.125432.1-125432.12| 共12页
  • 作者单位

    The Johns Hopkins University Applied Physics Laboratory, Laurel, Maryland, USA;

    The Johns Hopkins University Applied Physics Laboratory, Laurel, Maryland, USA;

    The Johns Hopkins University Applied Physics Laboratory, Laurel, Maryland, USA;

    The Johns Hopkins University Applied Physics Laboratory, Laurel, Maryland, USA;

    Department of Electrical and Computer Engineering, the University of Maryland, College Park, Maryland, USA;

    Department of Civil and Environmental Engineering, the University of Maryland, College Park, Maryland, USA;

    Department of Electrical and Computer Engineering, the University of Maryland, College Park, Maryland, USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    nanotubes;

    机译:纳米管;

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