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Carbon nanotube growth equipment
Carbon nanotube growth equipment
Product details
detailed description:

Carbon nanotube preparation equipment (carbon nanotube preparation system, carbon nanotube growth system) can be used for large-scale preparation of carbon nanotubes, including vertical carbon nanotube growth; Growing carbon nanotubes on various substrates such as Si, quartz, ceramics, and various metals (stainless steel, Ti, Pt, etc.) using inexpensive alcohol, gasoline, or biofuels as carbon sources; The enclosed cavity of the system not only ensures the necessary vacuum degree, but also can heat the substrate.

Related products:

1. Nanoparticle preparation system;
2. ZnO nanobelt preparation system;
3. Material carbonization research system: used for agricultural and forestry waste, papers, recyclable plastics, and so on;
4. Carbon nanotube production system CVD: used for powder carbon nanotubes, nanofibers, nanocoil, and film type CNTs, etc;
5. Catalyst film preparation system: It can deposit catalyst films on various materials for high-performance carbon nanotube indicators;

Technical parameters:
Carbon nanotube growth and preparation device (including vertical carbon nanotube growth);
Preparation of nanoparticles such as Au, Ag, Cu, Al, Si, Ti, Mg, Zn, etc;
Preparation of ZnO nanoribbons;
Processing temperature range: 400~800
Real time temperature monitoring during the growth process of carbon nanotubes
Reaction source: Carbon containing gas or liquid alcohol

Main features:
*Fast preparation speed;
*Support substrate heating;
*Ensure a certain degree of vacuum;
*Mature craftsmanship and rich experience;
*Easy to operate;

Technical Introduction:
*Equip ethanol injection unit; No flammable hydrocarbon gas is required.
*The growth of carbon nanotubes only takes a few minutes, and the entire operation process does not exceed 30 minutes.
*Small scale design, easy operation, low cost, high-quality carbon nanotubes.
*In the synthesis process of carbon nanotubes, there is no need to use reducing gas (hydrogen) to reduce the catalyst, as the ethanol carbon source used itself has strong reducibility. The metal reducing property of ethanol enables carbon nanotubes to be directly deposited on various alloy materials, such as,NiCu, SUSwait. And there is no need to deposit a catalyst film in advance, becauseNi, Fe, or CoCatalytic elements exist independently as catalytic particles in alloys.
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The transparent glass chamber allows researchers to directly observe the entire deposition process. This system meets the research needs of carbon nanotube synthesis experiments in university research institutes.

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