Preparation method of flexible transparent conductive film with self-cleaning function
A technology of transparent conductive film and transparent film, applied in the direction of conductive layer on insulating carrier, conductive material dispersed in non-conductive inorganic materials, cable/conductor manufacturing, etc., can solve the problem of poor adhesion and flexibility of conductive coating Not good, the transparency is not high enough, etc., to achieve the effect of easy surface chemical grafting, good bonding performance, and high transparency
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Embodiment 1
[0046] (1) Synthesis of a nano-silver wire with spherical nano-silver on the surface
[0047] step one
[0048] Add the polyol into the reaction kettle, raise the temperature to 120°C, and fill it with nitrogen, then dropwise add silver salt, metal salt and guiding agent into the reaction kettle, and react for 2 hours to obtain linear nano-silver wires; the silver salt , The mass ratio of polyol, metal salt and guiding agent is respectively: 1:20:0.1:0.5;
[0049] step two
[0050] Disperse the thread-like nano-silver wires obtained in step 1 in polyol, then add silver salt and guiding agent, and react at 50°C for 1 hour, then transfer it to a stainless steel autoclave, and raise the temperature to After reacting for another 4 hours at 160°C, silver nanowires with spherical nanosilver on the surface can be obtained; the mass ratios of the linear nanosilver wires, polyols, silver salts and guiding agents are respectively: 1:10:0.01:1;
[0051] The polyhydric alcohol is: ethy...
Embodiment 2
[0067] (1) Synthesis of a nano-silver wire with spherical nano-silver on the surface
[0068] step one
[0069] Add the polyol into the reaction kettle, raise the temperature to 200°C, and fill it with nitrogen, then add the silver salt, metal salt, and guiding agent dropwise into the reaction kettle, and react for 6 hours to obtain a linear nano-silver wire; the silver salt The mass ratios of polyol, metal salt and guiding agent are respectively: 1:200:0.5:5;
[0070] step two
[0071] Disperse the linear nano-silver wire obtained in step 1 in polyol again, then add silver salt and guide agent, and react at 60°C for 1 hour, then transfer it to a stainless steel autoclave, and raise the temperature to After reacting at 200°C for another 8 hours, silver nanowires with spherical nanosilver on the surface can be obtained; the mass ratios of the linear nanosilver wires, polyols, silver salts and guiding agents are: 1: 50: 0.05: 5;
[0072] The polyol is: propylene glycol; the s...
Embodiment 3
[0087] (1) Synthesis of a nano-silver wire with spherical nano-silver on the surface
[0088] step one
[0089] Add the polyol into the reaction kettle, raise the temperature to 150°C, and fill it with nitrogen, then add the silver salt, metal salt, and guiding agent dropwise into the reaction kettle, and react for 4 hours to obtain a linear nano-silver wire; the silver salt The mass ratios of polyol, metal salt and guiding agent are: 1:100:0.4:2;
[0090] step two
[0091] Disperse the thread-like nano-silver wire obtained in step 1 in polyol again, add silver salt and guide agent, and react at 55°C for 2 hours, then transfer it to a stainless steel high-pressure reactor, and raise the temperature to After reacting for another 7 hours at 180°C, silver nanowires with spherical nanosilver on the surface can be obtained; the mass ratios of the linear nanosilver wires, polyols, silver salts and guiding agents are: 1:40:0.04:4;
[0092] The polyhydric alcohol is: neopentyl glyc...
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