Efficient carbon-based nano wind generator and preparation method thereof
A carbon-based nano-generator technology, applied in wind turbines, wind turbine combinations, wind power generation, etc., can solve problems such as low power supply efficiency
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Embodiment 1
[0064] Example 1: High Efficiency Carbon-based Wind Power Nanogenerator and Its Workflow
[0065] The present embodiment provides a kind of high-efficiency carbon-based wind power nanogenerator such as figure 1 As shown, it includes a substrate 1 , a first electrode 3 , a second electrode 4 , inner multi-walled carbon nanotubes 5 , outer multi-walled carbon nanotubes 6 and fan blades 7 .
[0066] Wherein, the first electrode 3 is placed on one side of the base 1 as the positive electrode of the generator, and its material is Cu metal material; Negative electrode, its material is metal material Cu; One end of the inner layer multi-walled carbon nanotube 5 is fixed on the first electrode 3, and the other end of the inner layer multi-walled carbon nanotube 5 is fixed on the second electrode 4, for transmission To the current; the outer multi-walled carbon nanotubes 6 are coaxial with the inner multi-walled carbon nanotubes 5 and are set on the inner multi-walled carbon nanotubes...
Embodiment 2
[0073] Example 2: High Efficiency Carbon-Based Wind Power Nano Generator and Its Workflow
[0074] The depth of the radial opening on one side of the outer multi-walled carbon nanotube 6 is 10nm, the metal material of the first electrode 3 and the second electrode is Fe, the material of the insulating layer 2 is polydimethylsiloxane, and the material of the substrate 1 SiO is a non-metal oxide material 2 Except, other processes are all the same as in Example 1.
Embodiment 3
[0075] Example 3: High Efficiency Carbon-Based Wind Power Nano Generator and Its Workflow
[0076] The depth of the radial opening on one side of the outer multi-walled carbon nanotube 6 is 1nm, the metal material of the first electrode 3 and the second electrode is an alloy of Fe and Cu, and the material of the insulating layer 2 is SiO 2 and Al 2 o 3 The mixture of substrate 1 is non-metal oxide materials Si and SiO 2 Except the mixture, other processes are all the same as in Example 1.
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