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Laser for Carbon NanoTubes: from the PLD Deposition of the Catalytic Layer to the Thermal Characterization by Nanosecond Pulsed Laser

机译:用于碳纳米管的激光:从催化层的PLD沉积到纳秒脉冲激光器的热表征

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Carbon nanotubes (CNTs) are grown with a three steps process during which the sample is kept under vacuum combining pulsed laser deposition and radio frequency plasma enhanced chemical vapor deposition techniques. As results, the obtained CNTs are densely grown and vertically aligned, multi-walled, 5 to 20 nm in outer diameter. TEM analyses show the well graphitized parallel walls. Catalyst nanoparticles are trapped within or along the body of the CNTs. To characterize their thermal properties by pulsed photothermal method, it is necessary to deposit on the top a metallic thin layer (Ti, about 200 nm) acting as a photothermal transducer. The thermal conductivity and volumetric heat capacity of the CNTs film are identified. They are found to be respectively 210 Wm~(-1) K~(-1) and 5×10~4 JK~(-1) m~(-3).
机译:碳纳米管(CNT)以三个步骤生长,在此过程中,样品在真空中保持脉冲激光沉积和射频等离子体增强的化学气相沉积技术。结果,所获得的CNT在外径的密集生长和垂直对齐,多壁5至20nm。 TEM分析显示井石墨化的平行墙壁。催化剂纳米颗粒被捕获在CNT的体内或沿着CNT的主体内。为了通过脉冲光热方法表征它们的热性能,必须在金属薄层(Ti,约200nm)上沉积作为光热换能器的金属薄层(Ti,约200nm)。鉴定了CNT膜的导热率和体积热容量。它们被发现分别为210Wm〜(-1)k〜(-1)和5×10〜4 JK〜(-1)M〜(-3)。

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