A kind of nano-silver conductive film and preparation method thereof

A technology of conductive film and nano-silver, which is applied in the manufacture of cables/conductors, conductive layers on insulating carriers, circuits, etc., can solve the problems of yellowishness of the finished film and high B value, and achieve the effect of improving the effect

Active Publication Date: 2021-05-25
SUZHOU TONGLI PHOTOELECTRIC CO LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0005] The current nano-silver conductive film is yellowish and has a high B value due to the problem of the nano-silver solution.

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0018] Embodiment 1: A kind of nano-silver conductive film and its preparation method

[0019] A method for preparing a nano-silver conductive film. A layer of aqueous graphene aqueous solution is coated on the surface of the nano-silver conductive film, and an integral black protective layer is formed on the surface of the nano-silver conductive film after drying.

[0020] The preferred technical solution is: the mass fraction of the aqueous graphene aqueous solution is 0.05%. The aqueous graphene aqueous solution can also be called the aqueous graphene dispersion.

[0021] The preferred technical solution is: the temperature during drying is 110°C.

[0022] The preferred technical solution is: the thickness of the integral black protective layer is 1 micron.

[0023] A nano-silver conductive film forms a black protective layer on the surface of the nano-silver conductive film, and the material of the protective layer is graphene.

Embodiment 2

[0024] Embodiment 2: A kind of nano-silver conductive film and its preparation method

Embodiment 3

[0025] Embodiment 3: A kind of nano-silver conductive film and its preparation method

[0026] A method for preparing a nano-silver conductive film. A layer of aqueous graphene aqueous solution is coated on the surface of the nano-silver conductive film, and an integral black protective layer is formed on the surface of the nano-silver conductive film after drying.

[0027] The preferred technical solution is: the mass fraction of the aqueous graphene aqueous solution is 0.01%. The aqueous graphene aqueous solution can also be called the aqueous graphene dispersion.

[0028] The preferred technical solution is: the temperature during drying is 100°C.

[0029] The preferred technical solution is: the thickness of the integral black protective layer is 0.5 micron.

[0030] A nano-silver conductive film forms a black protective layer on the surface of the nano-silver conductive film, and the material of the protective layer is graphene.

[0031] Embodiment 2: A kind of nano-si...

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PUM

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Abstract

A nano-silver conductive film and a preparation method thereof. A layer of aqueous graphene aqueous solution is coated on the surface of the nano-silver conductive film, and an integral black protective layer is formed on the surface of the nano-silver conductive film after drying. The graphene protective layer of the present invention not only has a protective effect on the nano-silver conductive film, but also solves the problem of yellowing of the nano-silver conductive film, and at the same time improves the overall black effect of the touch screen.

Description

technical field [0001] The invention relates to a nano-silver conductive film and a preparation method thereof, in particular to a preparation method of a nano-silver conductive film with improved color system. Background technique [0002] With the rapid development of electronic information technology and artificial intelligence technology, electronic products tend to be smaller, softer and lighter. Therefore, flexible and wearable electronic products are increasingly widely used in various fields, such as in solar panels, touch displays, organic light-emitting diodes, etc. In recent years, a lot of research work on flexibility and high conductivity has been reported. Flexible conductive materials based on graphene, fullerene, carbon nanotubes, conductive polymer materials and metal nanomaterials have become research hotspots. Among them, silver nanowire (AgNWs)-based transparent conductive film has become a material that is very likely to replace the traditional ITO tra...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): H01B13/00H01B5/14
Inventor 钱玉泉
Owner SUZHOU TONGLI PHOTOELECTRIC CO LTD
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