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首页> 外文期刊>Journal of nanotechnology >Hybrid Carbon Fibers/Carbon Nanotubes Structures for Next Generation Polymeric Composites
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Hybrid Carbon Fibers/Carbon Nanotubes Structures for Next Generation Polymeric Composites

机译:下一代聚合物复合材料的混合碳纤维/碳纳米管结构

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摘要

Pitch-based carbon fibers are commonly used to produce polymeric carbon fiber structural composites. Several investigations have reported different methods for dispersing and subsequently aligning carbon nanotubes (CNTs) as a filler to reinforce polymer matrix. The significant difficulty in dispersing CNTs suggested the controlled-growth of CNTs on surfaces where they are needed. Here we compare between two techniques for depositing the catalyst iron used toward growing CNTs on pitch-based carbon fiber surfaces. Electrochemical deposition of iron using pulse voltametry is compared to DC magnetron iron sputtering. Carbon nanostructures growth was performed using a thermal CVD system. Characterization for comparison between both techniques was compared via SEM, TEM, and Raman spectroscopy analysis. It is shown that while both techniques were successful to grow CNTs on the carbon fiber surfaces, iron sputtering technique was capable of producing more uniform distribution of iron catalyst and thus multiwall carbon nanotubes (MWCNTs) compared to MWCNTs grown using the electrochemical deposition of iron.
机译:沥青基碳纤维通常用于生产聚合物碳纤维结构复合材料。几项研究报告了将碳纳米管(CNT)作为填充剂进行分散和随后排列以增强聚合物基质的不同方法。分散CNT的显着困难表明CNT在需要它们的表面上的受控生长。在这里,我们比较了两种用于在沥青基碳纤维表面上沉积用于生长CNT的催化剂铁的技术。使用脉冲伏安法对铁的电化学沉积与直流磁控铁溅射进行了比较。使用热CVD系统进行碳纳米结构的生长。通过SEM,TEM和拉曼光谱分析比较了两种技术之间的比较特性。结果表明,尽管两种技术都成功地在碳纤维表面上生长了CNT,但是与使用铁的电化学沉积方法所产生的MWCNT相比,铁溅射技术能够产生更均匀的铁催化剂分布,从而产生多壁碳纳米管(MWCNT)。

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