Production of carbon nanotubes and their functionalization

IF 0.3 Q4 CHEMISTRY, MULTIDISCIPLINARY Chemical Bulletin of Kazakh National University Pub Date : 2020-12-21 DOI:10.15328/cb1147
M. Nazhipkyzy, Nazgul Kuantai
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Abstract

In this work, the synthesis of carbon nanotubes was carried out on the sand surface with hydrophobic properties by chemical vapor deposition (CVD). The effective temperature for the synthesis of carbon nanotubes is 800 °C. Propane-butane gas mixture was used as a source of gaseous carbon. Argon gas (Ar) was used as an inert carrier gas. Nickel nitrate (Ni(NO3)2) was chosen as a catalyst for producing carbon nanotubes. Despite all the special properties of carbon nanomaterials, one of the problems with its use is its tendency to agglomerate and inert to the matrix of various substances. In order to solve this problem, the chemical functionalization of the surface layer of multiwall carbon nanotubes was carried out. To introduce carboxyl groups into the surface layer of carbon nanotubes, its surface was treated with a concentrated mixture of acids H2SO4/HNO3. It has been established that the main part of the functional groups in the surface layer of nanotubes are carboxyl, carbonyl and hydroxyl groups. Carbon nanotubes synthesized on the surface of hydrophobic sand were analyzed by the following research methods: scanning electron microscope, optical microscope, elemental analysis, Raman spectroscopy and a qualitative assessment of functionalized nanotubes using IR spectroscopy.
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碳纳米管的制备及其功能化
本工作通过化学气相沉积(CVD)在具有疏水性的沙子表面合成了碳纳米管。合成碳纳米管的有效温度为800°C。丙烷-丁烷气体混合物被用作气态碳的来源。使用氩气(Ar)作为惰性载气。选择硝酸镍(Ni(NO3)2)作为制备碳纳米管的催化剂。尽管碳纳米材料具有所有特殊性质,但其使用的问题之一是其易于聚集并对各种物质的基质呈惰性。为了解决这个问题,对多壁碳纳米管的表面层进行了化学功能化。为了将羧基引入碳纳米管的表面层,用酸H2SO4/HNO3的浓缩混合物对其表面进行处理。已经确定纳米管表面层中的官能团主要是羧基、羰基和羟基。采用扫描电子显微镜、光学显微镜、元素分析、拉曼光谱和红外光谱对疏水砂表面合成的碳纳米管进行了分析。
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审稿时长
10 weeks
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