Flexible transparent conductive film based on silver nanowires and preparation method
A technology of transparent conductive film and nano-silver wire, which is applied to conductive layers on insulating carriers, cable/conductor manufacturing, circuits, etc., can solve the problems of high cost, complex preparation of transparent conductive films, and many processes, and improve the conductivity. , low price, good adhesion effect
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[0034] A flexible transparent conductive film based on nano-silver wires, the transmittance of light is above 87%, the square resistance is 10~200ohm / sq, and the change rate of square resistance and transmittance after bending at least twice is less than 1% or remain unchanged. It is mainly composed of a network layer 1 composed of nano-silver wires, a nano-particle filling structure 2 and an optical adhesive layer 4. The nano-silver wires are distributed on the optical adhesive layer to form a network-like conductive structure, and at the same time there are no less than 10% Nano-silver wires are embedded in the optical glue layer, which can ensure the smoothness of the surface. The network layer can be formed on the glass substrate by spin-coating the dispersion liquid of nano-silver wires without heating and baking. Nano-particles (such as nano-titanium dioxide, One or more of nano-zirconia, nano-silica or nano-alumina nanoparticles) are filled in the conductive network com...
specific example 1
[0036] refer to figure 1 ,2,3
[0037] Silver nanowires with a concentration of 0.2% (such as image 3 ) The dispersion liquid is uniformly coated on the glass through a homogenizer, and placed in the air for 5-10 minutes to completely evaporate the solvent. A uniform network of nano-silver wires is formed on the glass.
[0038] The concentration of 0.5% nano-titanium dioxide dispersion is uniformly coated on the nano-silver wire network layer. Baking at 80°C for 30s forms nano-titanium dioxide filled nano-silver wire network structure.
[0039] A layer of optical UV glue is spin-coated on the nano-titanium dioxide-filled nano-silver wire network structure, and irradiated with an ultraviolet lamp for 2-5 minutes. After curing is complete, the film is peeled off the glass.
[0040] The electrical conductivity of the film was tested by the four-probe method to test the sheet resistance, and the transmittance of the prepared film was tested by a spectrophotometer. The fle...
specific example 2
[0042] refer to figure 1 , 2, 4
[0043] Silver nanowires with a concentration of 0.7% (such as Figure 4 ) The dispersion liquid is uniformly coated on the glass through a homogenizer, and placed in the air for 5-10 minutes to completely evaporate the solvent. A uniform network of nano-silver wires is formed on the glass.
[0044] The nano zirconium dioxide dispersion liquid with a concentration of 0.8% is uniformly coated on the nano silver wire network layer. Baking at 80°C for 30s to form a network structure of nano-zirconium dioxide filled nano-silver wires.
[0045] A layer of optical gel is spin-coated on the network structure of nano-zirconia filled nano-silver wires, and dried at 50°C / 2h. After curing is complete, the film is peeled off from the glass.
[0046] The electrical conductivity of the film was tested by the four-probe method to test the sheet resistance, and the transmittance of the prepared film was tested by a spectrophotometer. For the flexibility t...
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