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The effect of nickel content of composite catalysts synthesized by hydrothermal method on the preparation of carbon nanotubes

机译:水热法合成催化剂的镍含量对碳纳米管制备的影响

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Multiwall carbon nanotubes were synthesized by pyrolysis of acetylene using the catalyst of Ni(OH)_2/SiO_2 composite powder, which is prepared by hydrothermal method using Ni(NO_3)_2·6H_2O and (C_2H_5O)_4SiO_4 as the main precursor materials. Our study shows that: in a specific limits of the ratio of silicon to nickel (1:2—1:14), with increasing of nickel content, the diameter and crystallization degree of Ni(OH)_2/SiO_2 composite powder increase, while the activeness first improves and then falls. The output and purity of carbon nanotubes prepared by them first increase and then decrease, and the range of the pipe diameter of carbon nanotubes first shrinks and then expands. When the ratio of silicon to nickel in the catalyst is 1:12, the purity degree of carbon nanotubes is the highest, the pipe diameter is small and even, which is 25 nm mostly, and the output of carbon nanotubes is also the largest (each gram catalyst makes 3.5 g carbon nanotubes including catalyst).
机译:以Ni(NO_3)_2·6H_2O和(C_2H_5O)_4SiO_4为主要前驱体,通过水热法制备的Ni(OH)_2 / SiO_2复合粉末催化剂,通过乙炔的热解合成多壁碳纳米管。我们的研究表明:在特定的硅镍比例(1:2–1:14)中,随着镍含量的增加,Ni(OH)_2 / SiO_2复合粉末的直径和结晶度增加,而活动性首先提高,然后下降。由它们制备的碳纳米管的产量和纯度首先增加然后降低,并且碳纳米管的管径范围首先收缩然后扩大。当催化剂中硅镍比为1:12时,碳纳米管的纯度最高,管径小而均匀,多数为25 nm,碳纳米管的产量也最大(每克催化剂可制成3.5克含催化剂的碳纳米管。

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