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The preparation and CVD densification of multi-walled carbon nanotube felt synthesized by a catalytic CVD method

机译:催化CVD法合成多壁碳纳米管毡的制备及CVD致密化

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摘要

Silica-nickel binary aerogels are used as catalysts for the synthesis of multi-walled carbon nanotube (MWCNT) felts. The MWCNT felts are prepared by the catalytic decomposition of methane at 680 degrees C over durations ranging from 30 to 120 min. After purification by a graphitization heat-treatment in argon, the MWCNT felts have a bulk density of about 0.4 g cm(-3). The graphitized MWCNT felts are densified in a CVD furnace under a mixed atmosphere of propene and nitrogen at 1000 degrees C. The morphology and the structure of the MWCNT felt and its CVD-densified product are investigated by SEM, TEM, XRD, and Raman spectroscopy. ne results reveal that the carbon nanotubes in the primary MWCNT felt have a diameter of between 15 and 40 nm, with a high aspect ratio. High-resolution TEM imaging reveals that the walls of the carbon nanotubes show little amorphous carbon covering. After the graphitization treatment, the surface of the carbon nanotubes becomes rough and some "stacked cups" and triangular structures are formed in the core of some of the nanotubes. The graphitization treatment effectively promotes crystal growth and layer orientation of the carbon nanotubes. This high temperature-treated MWCNT felt has a high purity and a low bulk density, as well as low thermal conductivity. Pyrolytic carbon formed by CVD is deposited in between carbon nanotubes and on the walls of the carbon nanotubes, leading to the densification of the MWCNT felt. The CVD-densified MWCNT felt has a higher bulk density and thermal conductivity than that of the corresponding high temperature-treated MWCNT felt. It is suggested that the MWCNT felt could be used as a precursor in the production of carbon nanotube/carbon or carbon nanotube/polymer composites.
机译:硅镍二元气凝胶被用作合成多壁碳纳米管(MWCNT)毛毡的催化剂。 MWCNT毛毡是通过在680摄氏度下,持续30至120分钟的时间内催化甲烷分解而制备的。在氩气中通过石墨化热处理纯化后,MWCNT毡的堆积密度约为0.4 g cm(-3)。石墨化的MWCNT毡在丙烯和氮气的混合气氛中于1000摄氏度的条件下在CVD炉中进行致密化。通过SEM,TEM,XRD和拉曼光谱研究MWCNT毡及其CVD致密化产品的形态和结构。新的结果表明,初级MWCNT毡中的碳纳米管的直径在15至40nm之间,具有高的长宽比。高分辨率TEM成像显示,碳纳米管的壁几乎没有非晶碳覆盖。在进行石墨化处理之后,碳纳米管的表面变得粗糙,并且在一些纳米管的核心中形成了一些“叠杯”和三角形结构。石墨化处理有效地促进了碳纳米管的晶体生长和层取向。这种经高温处理的MWCNT毡具有高纯度和低堆积密度以及低导热性。通过CVD形成的热解碳沉积在碳纳米管之间和碳纳米管的壁上,从而导致MWCNT毡的致密化。 CVD致密的MWCNT毛毡比相应的高温处理的MWCNT毛毡具有更高的堆积密度和导热系数。建议将MWCNT毡用作碳纳米管/碳或碳纳米管/聚合物复合材料的生产中的前体。

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