Preparation method of carbon nano tube film

一种碳纳米管膜、碳纳米管的技术,应用在碳纳米管膜的制备领域,能够解决不易形成、胶带与碳纳米管接触不牢固、缝隙等问题,达到避免厚度不均或缝隙的效果

Active Publication Date: 2010-10-27
TSINGHUA UNIV +1
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Problems solved by technology

However, the stretching method is to use adhesive tape to contact the carbon nanotube array 12 and stretch it, but it is not easy to form a flat contact surface between the adhesive tape and the carbon nanotube array 12, so that the contact between the adhesive tape and the carbon nanotube is not firm, and , it cannot be ensured that the carbon nanotubes in contact with the contact surface can be separated from the substrate at the same time during the stretching process, so that discontinuous points 16 appear in the carbon nanotube array 12, and then the obtained carbon nanotube film 14 has uneven thickness or gaps, etc. discontinuity

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  • Preparation method of carbon nano tube film
  • Preparation method of carbon nano tube film
  • Preparation method of carbon nano tube film

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preparation example Construction

[0017] see figure 2 and image 3 , the preparation method of the carbon nanotube film in the embodiment of the present invention mainly includes the following steps:

[0018] Step 1: providing a carbon nanotube array 24 grown on the surface of a substrate 22 .

[0019] Preferably, in this embodiment, the carbon nanotube array 24 is a super-aligned carbon nanotube array, and the carbon nanotube array 24 is prepared by chemical vapor deposition. The carbon nanotube array 24 is a pure carbon nanotube array formed by a plurality of carbon nanotubes 242 growing parallel to each other and perpendicular to the substrate 22 . The carbon nanotubes 242 in the carbon nanotube array 24 include one or more of single-wall carbon nanotubes, double-wall carbon nanotubes or multi-wall carbon nanotubes. The single-walled carbon nanotubes have a diameter of 0.5 nm to 50 nm, the double-walled carbon nanotubes have a diameter of 1.0 nm to 50 nm, and the multi-walled carbon nanotubes have a dia...

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Abstract

The invention relates to a preparation method of a carbon nano tube film, which comprises the following steps: providing a carbon nano tube array, wherein the carbon nano tube array grows on the surface of a substrate and comprises a plurality of carbon nano tubes; providing a stretching tool, wherein the stretching tool comprises a viscous bonding surface which is provided with a straight edge; moving the straight edge of the bonding surface of the stretching tool to be close to the substrate to bond the bonding surface with the carbon nano tube array; and moving the stretching tool in a direction away from the growing substrate at a certain speed to obtain a continuous carbon nano tube film by pulling the carbon nano tube array from the part thereof bonded with the straight side of the bonding surface of the stretching tool. By using the preparation method, one continuous carbon nano tube film can be obtained.

Description

technical field [0001] The invention relates to a preparation method of a carbon nanotube film. Background technique [0002] Carbon nanotubes are a new type of one-dimensional nanomaterials discovered in the early 1990s, see "Helical microtubules of graphitic carbon", Sumio Iijima, Nature, vol.354, p56 (1991). The special structure of carbon nanotubes determines its special properties, such as high tensile strength and high thermal stability; with the change of the helical mode of carbon nanotubes, carbon nanotubes can exhibit metallic or semiconducting properties. Because carbon nanotubes have an ideal one-dimensional structure and excellent properties in the fields of mechanics, electricity, and heat, they have shown broad application prospects in interdisciplinary fields such as materials science, chemistry, and physics. They are widely used in scientific research and industrial applications. has also received increasing attention. [0003] Although carbon nanotubes ha...

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C01B31/02
CPCB82Y30/00C01B2202/08
Inventor 冯辰姜开利刘亮范守善
Owner TSINGHUA UNIV
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