Preparation method and product of high-stability flexible transparent conductive cellulose film
A cellulose film, transparent and conductive technology, applied in the production of bulk chemicals, coatings, starch coatings, etc., can solve the problems of conductive film conductive performance fluctuations, conductive layer shedding, etc., to improve high-end quality, increase conductive stability and The effect of friction resistance
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preparation example Construction
[0034] The present invention relates to a kind of preparation method of flexible transparent conductive cellulose film of high stability, and described method step is as follows:
[0035] (1) dissolving the cellulose pulp in a cellulose solvent, and preparing a regenerated cellulose film through regeneration treatment;
[0036] (2) prepare starch solution;
[0037] (3) Disperse the silver nanowires in the starch solution to form a silver nanowire-starch solution, and cover the silver nanowire-starch solution on the cellulose film to obtain a sample;
[0038] (4) drying the prepared sample in an oven to obtain a highly stable flexible transparent conductive cellulose film.
[0039] The cellulose pulp in step (1) is wood dissolving pulp, non-wood dissolving pulp or cotton.
[0040] The cellulose solvent in step (1) is one of ionic liquid, N-methylmorpholine-N-oxide, DMAC-LiCl and NaOH-urea.
[0041] The starch solution in step (2) is corn starch, sweet potato starch or modifi...
example 1
[0047] Example 1: Preparation of highly stable flexible transparent conductive cellulose film
[0048] Step (1), preparing hardwood dissolving pulp, dissolving in ionic liquid, and preparing regenerated cellulose membrane through regeneration.
[0049] Step (2), prepare cornstarch, prepare the starch solution of 5g / L.
[0050] Step (3), dissolving the silver nanowires in the starch solution to prepare a silver nanowire-starch solution with a concentration of 50 ppm; spin-coat the silver nanowire-starch solution onto the cellulose film with a coater to obtain a sample.
[0051] Step (4), put the sample in step (3) into an oven at 80° C., and process it for 40 minutes.
[0052] Step (5), after pasting 100 times with 3M adhesive tape, the conductivity of the conductive cellulose film only increases from 30Ω / □ to 38Ω / □, and the transparency is 75%.
example 2
[0053] Example 2: Preparation of highly stable flexible transparent conductive cellulose film
[0054] Step (1), preparing softwood dissolving pulp and dissolving it in N-methylmorpholine-N-oxide solution, and preparing regenerated cellulose film through regeneration.
[0055] Step (2), prepare oxidized starch, prepare 8g / L starch solution.
[0056] Step (3), dissolving the silver nanowires in the starch solution to prepare a silver nanowire-starch solution with a concentration of 100 ppm; spin-coating the silver nanowire-starch solution onto the cellulose film with a coater to obtain a sample.
[0057]Step (4), put the sample in step (3) into an oven at 50° C., and process it for 80 minutes.
[0058] Step (5), after pasting 200 times with 3M adhesive tape, the conductivity of the conductive cellulose film only increased from 10Ω / □ to 20Ω / □, and the transparency was 70%.
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