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首页> 外文期刊>Composites Part A: Applied Science and Manufacturing. >Synthesis of CNTs on stainless steel microfibrous composite by CVD: Effect of synthesis condition on carbon nanotube growth and structure
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Synthesis of CNTs on stainless steel microfibrous composite by CVD: Effect of synthesis condition on carbon nanotube growth and structure

机译:化学气相沉积法在不锈钢微纤维复合材料上合成碳纳米管:合成条件对碳纳米管生长和结构的影响

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摘要

CNT-microfibrous (CNT-MF) composites are synthesized by thermal chemical vapor deposition (CVD) method. The effects of deposition temperature, deposition time, gas flow rate and acid pretreatment on the structure of CNT-MF are investigated. Results show that with increase of temperature, the yield of CNT is increased due to the increasing CNT growth rate and the evolution of surface roughness of the composite. The quality of the CNT is increased first and then decreased. With increase of gas flow rate, the yield of CNT is increased first and then decreased due to the increase of carbon diffusion rate and decrease of contact time between carbon precursor and catalysts. The CNT crystalline perfection is improved. With increase of deposition time, the yield and quality of CNT is increased and the CNT growth form changes as deposition time increases. Acid pretreatment can change the surface structure of the support. 1 mol/L HCl pretreatment forms uniform small particles so the yield of CNT is increased, but the quality of CNT is decreased. When the acid concentration is increase to 2 mol/L, the mechanical strength of the substrate is destroyed badly and flaky grains are formed, causing the decrease of the CNT yield and quality.
机译:CNT-微纤维(CNT-MF)复合材料是通过热化学气相沉积(CVD)方法合成的。研究了沉积温度,沉积时间,气体流速和酸预处理对CNT-MF结构的影响。结果表明,随着温度的升高,碳纳米管的产率由于碳纳米管生长速率的增加和复合材料表面粗糙度的提高而增加。 CNT的质量首先增加,然后下降。随着气体流速的增加,由于碳扩散速率的增加和碳前驱体与催化剂之间接触时间的减少,CNT的收率先增加后降低。 CNT的结晶度得到改善。随着沉积时间的增加,CNT的产量和质量增加,并且CNT的生长形式随着沉积时间的增加而改变。酸预处理可以改变载体的表面结构。 1 mol / L HCl预处理形成均匀的小颗粒,因此CNT的收率增加,但CNT的质量下降。当酸浓度增加到2mol / L时,基材的机械强度被严重破坏并且形成片状晶粒,导致CNT产率和质量的降低。

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