Mobile terminal for highway driving recording
A mobile terminal and driving record technology, applied in the field of transportation, can solve problems such as lack of solar cell modules, energy waste, and inability to efficiently utilize solar energy resources, and achieve the effects of improving collection efficiency, improving capacity, and reducing contact barriers
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Embodiment 1
[0034] Such as figure 1 As shown, a mobile terminal for expressway driving record provided by an embodiment of the present invention is characterized in that a polymer solar cell module is installed on the outer surface of the mobile terminal, and the ITO glass of the polymer solar cell module One side is assembled facing the outside, and connected to the mobile terminal through wires; the polymer solar cell is a sandwich structure consisting of an anode electrode, an organic active layer, and a cathode electrode; the anode electrode is made of ITO glass (01 ), WO X Film (02), WO X Nanowire film (04), PEDOT:PSS buffer layer (03), wherein, WO X Nanowire films (04) grown on WO X On the film (02), a PEDOT:PSS buffer layer (03) is filled between the nanowire structures, and the length of the nanowire is greater than the thickness of the PEDOT:PSS buffer layer (03); the organic active layer (05) is located between the anode electrode and Between the cathode electrodes, the thic...
Embodiment 2
[0049] A mobile terminal for expressway driving record provided by the embodiments of the present invention is characterized in that a polymer solar cell module is installed on the outer surface of the mobile terminal, and the ITO glass side of the polymer solar cell module faces Assembled on the outside and connected to the mobile terminal through wires; the polymer solar cell is a sandwich structure consisting of an anode electrode, an organic active layer, and a cathode electrode; the anode electrode is ITO glass (01), WO X Film (02), WO X Nanowire film (04), PEDOT:PSS buffer layer (03), wherein, WO X Nanowire films (04) grown on WO X On the film (02), a PEDOT:PSS buffer layer (03) is filled between the nanowire structures, and the length of the nanowire is greater than the thickness of the PEDOT:PSS buffer layer (03); the organic active layer (05) is located between the anode electrode and Between the cathode electrodes, the thickness of the organic active layer (05) is ...
Embodiment 3
[0064] A kind of mobile terminal that is used for expressway driving record, it is characterized in that, polymer solar cell module is installed on the outer surface of described mobile terminal, and the ITO glass side of this polymer solar cell module is assembled toward the outside, and moves through wire and terminal connection; the polymer solar cell is a sandwich structure consisting of an anode electrode, an organic active layer, and a cathode electrode; the anode electrode is ITO glass (01), WO X Film (02), WO X Nanowire film (04), PEDOT:PSS buffer layer (03), wherein, WO X Nanowire films (04) grown on WO X On the film (02), a PEDOT:PSS buffer layer (03) is filled between the nanowire structures, and the length of the nanowire is greater than the thickness of the PEDOT:PSS buffer layer (03); the organic active layer (05) is located between the anode electrode and Between the cathode electrodes, the thickness of the organic active layer (05) is 300nm; the cathode elect...
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