System for drug iontophoresis driven by triboelectric field
A technology of iontophoresis and triboelectricity, which is applied in the direction of electrotherapy and treatment, can solve the problems of limited application, expensive special instruments and equipment, safety, portability, applicability and maintenance, and achieve long service life, Improved friction efficiency and ease of processing
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Embodiment 1
[0037] figure 1 It is a specific embodiment of a system for triboelectric field-driven drug ion introduction. As shown in the figure, the system includes a triboelectric generator 8, a rectifier 2, a drug ion carrier 3 and an electric field electrode 6, and the triboelectric generator 8 is connected to the rectifier 2 To convert the alternating current generated by the friction generator 8 into direct current. The rectifier 2 includes two DC electrodes (DC output terminals), one of which is connected to the electric field electrode 6 , and the other is connected to the human skin 4 , forming a DC electrostatic field 5 between the electric field electrode 6 and the human skin 4 .
[0038] The friction generator 8 is a multilayer film type. The friction generator 8 is placed in parallel with the electric field electrode 6 in the same direction, and an insulating isolation layer 7 is set between the friction generator 8 and the electric field electrode 6, that is, at the first e...
Embodiment 2
[0049]This embodiment provides another specific embodiment of a system for driving drug ion introduction by a triboelectric field. The difference from Embodiment 1 is that the structure of the triboelectric generator 8 is different. In this embodiment, the triboelectric generator 8 is a fully transparent structure based on a high molecular polymer. The triboelectric generator 8 is like a sandwich structure consisting of two different polymer sheets stacked on top of each other with an intervening film in between. The triboelectric generator 8 includes a first electrode 40 , a first high molecular polymer insulating layer 42 , an intermediate film 44 , a second high molecular polymer insulating layer 45 and a second electrode 41 placed in sequence.
[0050] Such as Figure 4 As shown, polyethylene terephthalate (PET) is used as the first polymer insulating layer 42, and polyethylene terephthalate (PET) is used as the second polymer insulating layer 45. A conductive thin film...
Embodiment 3
[0059] This embodiment provides another specific embodiment of a system for driving drug ion introduction by a triboelectric field. The difference from Embodiment 1 is that the structure of the triboelectric generator 8 is different. also like Figure 4 As shown in the structure, the difference is that the first polymer insulating layer 42 adopts a rectangular (4.5cm×1.2cm) polyimide film (thickness 125μm, DuPont 500HN, Kapton), one surface of which is coated by sputtering The first electrode 40 is plated with an alloy metal film (thickness 100nm, Au); the first polymer insulating layer 45 is also a rectangular (4.5cm×1.2cm) polyimide film (thickness 125μm, DuPont 500HN, Kapton), and an alloy metal film (thickness 100nm, Au) used as the second electrode 41 is plated on one surface by sputtering coating method, and the intermediate film 44 is flexible polymethylmethacrylate (thickness 50μm , PMMA), a first electrode 40 and a second electrode 41 with a regular quadrangular pyra...
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