Self-heating mask based on infrared driving and production process thereof
A self-heating, facial mask technology, applied in the field of non-woven materials medical beauty skin care products, can solve the problems of poor human experience, thick facial mask, etc., and achieve the effects of simple and controllable preparation process, wide source and low cost
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Embodiment 1
[0027] A self-heating mask based on infrared driving, comprising the following steps:
[0028] (1) Polyacrylonitrile carbon nanofibers were prepared by electrospinning technology as photothermal reagents.
[0029] Specifically: 15% PAN and 85% DMF were prepared into spinning solution, and the solution was stirred at 60°C until the solution was evenly mixed. During electrospinning, the spinning speed was 15 μL / min, the distance from the spinning nozzle to the receiving surface was 20 cm, the electric field strength was 16 KV, the room temperature was controlled at 25 °C, and the humidity was 48%. Then, the spun film was pre-oxidized in an environment of 250 °C, and then heated to 800 °C for carbonization in a nitrogen environment at a heating rate of 5 °C / min. The carbon nanofibers formed after carbonization are ground into powder for use.
[0030] (2) Disperse the nano-pure carbon fibers in (1) in an aqueous ethanol solution, the volume ratio of ethanol to water is 2:1, and ...
Embodiment 2
[0033] A self-heating mask based on infrared driving, comprising the following steps:
[0034] (1) Precious metal-doped carbon nanofibers were prepared by electrospinning technology as photothermal reagents.
[0035] Specifically: 10% of PAN, 5% of PMMA, 1% of silver nitrate, 5% of PEG and 79% of DMF were prepared into spinning solution, and the solution was stirred at 65°C until the solution was uniformly mixed. The electrospinning parameters were as follows: the spinning speed was 10 μL / min, the distance from the spinning nozzle to the receiving surface was 18 cm, the electric field intensity was 16 KV, the room temperature was 25 °C, and the humidity was 45%. The spun film was pre-oxidized in an environment of 200 °C, and then heated to 700 °C for carbonization in a nitrogen environment at a heating rate of 5 °C / min. The carbon nanofibers formed after carbonization are ground into powder for use.
[0036] (2) Disperse the precious metal-doped carbon nanofibers in (1) in a...
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