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Anodic titanium oxide: A new template for the synthesis of larger diameter multi-walled carbon nanotubes

机译:阳极氧化钛:用于合成大直径多壁碳纳米管的新模板

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Carbon nanotubes (CNTs) with larger diameter were synthesized over anodic titanium oxide (ATO) template by CVD method using acetylene as carbon source. The porous titanium oxide was obtained by anodization of titanium metal in a mixture of 1 M H_2SO_4 + 0.5 percent HF electrolyte at a constant applied potential of 40 V. The XRD analysis of anodized titanium revealed that rutile and anatase forms of TiO_2 are formed due to anodization. Further, SEM analysis was used to follow the development of pores on titanium surface. The TEM analysis revealed that the formed CNTs are straight and hollow with uniform wall thickness as well as larger diameter (70-80 nm). HRTEM study showed that the formed CNTs are multi-walled and their wall thickness is around 2-3 nm. Further, the structural features of the formed CNTs were studied by XRD. Raman spectroscopy was used to study the degree of graphitization of CNTs. The Lewis acid sites of TiO_2 present in the internal surface of the pores play an important role in the catalytic decomposition of acetylene and hence the formation of CNTs. When increasing the carbon deposition time, the wall thickness of CNTs is not increased significantly, indicating that the decomposition of acetylene is due to Lewis acid sites of TiO_2 and not due to thermal decomposition. Further, the morphology of CNTs formed over ATO template was compared with that of CNTs formed on Co electrodeposited ATO. There is no significant difference in morphology as well as wall thickness was observed between the CNTs grown over ATO with and without Co catalyst. But, still further investigations are necessary to study the structural differences between the CNTs grown over ATO with and without Co catalyst.
机译:以乙炔为碳源,通过CVD法在阳极氧化钛(ATO)模板上合成了较大直径的碳纳米管。通过在40 V的恒定施加电势下在1 M H_2SO_4 + 0.5%HF电解质的混合物中对钛金属进行阳极氧化获得多孔氧化钛。对阳极氧化的钛进行XRD分析表明,由于金红石和锐钛矿形式形成了TiO_2阳极氧化。此外,使用SEM分析来追踪钛表面上的孔的发展。 TEM分析表明,形成的CNT是直的和空心的,具有均匀的壁厚以及较大的直径(70-80nm)。 HRTEM研究表明,形成的CNT是多壁的,壁厚约为2-3 nm。此外,通过XRD研究了形成的CNT的结构特征。拉曼光谱法用于研究碳纳米管的石墨化程度。孔的内表面中存在的TiO_2的Lewis酸位在乙炔的催化分解以及CNT的形成中起重要作用。当增加碳沉积时间时,CNT的壁厚不会显着增加,这表明乙炔的分解是由于TiO_2的路易斯酸位而不是由于热分解。此外,将在ATO模板上形成的CNT的形态与在Co电沉积的ATO上形成的CNT的形态进行了比较。在有和没有钴催化剂的情况下,在ATO上生长的CNT之间在形态和壁厚上都没有显着差异。但是,仍需要进一步的研究来研究在有和没有钴催化剂的情况下在ATO上生长的CNT之间的结构差异。

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