CN107204153B - A kind of advertisement distributing system based on application of solar energy - Google Patents

A kind of advertisement distributing system based on application of solar energy Download PDF

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CN107204153B
CN107204153B CN201710405351.4A CN201710405351A CN107204153B CN 107204153 B CN107204153 B CN 107204153B CN 201710405351 A CN201710405351 A CN 201710405351A CN 107204153 B CN107204153 B CN 107204153B
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solar
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CN107204153A (en
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不公告发明人
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Hangzhou Guanggu High-tech Group Co., Ltd.
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Hangzhou Guanggu High-Tech Group Co Ltd
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    • GPHYSICS
    • G09EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
    • G09FDISPLAYING; ADVERTISING; SIGNS; LABELS OR NAME-PLATES; SEALS
    • G09F9/00Indicating arrangements for variable information in which the information is built-up on a support by selection or combination of individual elements
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01GCAPACITORS; CAPACITORS, RECTIFIERS, DETECTORS, SWITCHING DEVICES OR LIGHT-SENSITIVE DEVICES, OF THE ELECTROLYTIC TYPE
    • H01G9/00Electrolytic capacitors, rectifiers, detectors, switching devices, light-sensitive or temperature-sensitive devices; Processes of their manufacture
    • H01G9/20Light-sensitive devices
    • H01G9/2022Light-sensitive devices characterized by he counter electrode
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01GCAPACITORS; CAPACITORS, RECTIFIERS, DETECTORS, SWITCHING DEVICES OR LIGHT-SENSITIVE DEVICES, OF THE ELECTROLYTIC TYPE
    • H01G9/00Electrolytic capacitors, rectifiers, detectors, switching devices, light-sensitive or temperature-sensitive devices; Processes of their manufacture
    • H01G9/20Light-sensitive devices
    • H01G9/2027Light-sensitive devices comprising an oxide semiconductor electrode
    • H01G9/2031Light-sensitive devices comprising an oxide semiconductor electrode comprising titanium oxide, e.g. TiO2
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E10/00Energy generation through renewable energy sources
    • Y02E10/50Photovoltaic [PV] energy
    • Y02E10/542Dye sensitized solar cells

Abstract

This application involves a kind of advertisement distributing system based on application of solar energy, which includes advertising component, advertising control system, electric system;The electric system is made of solar electric power supply system, electromechanical switches and mains system;The solar electric power supply system includes solar panel, solar controller, battery, inverter, solar panel can be located at bus platform ceiling, outdoor advertising curtain wall ceiling position, the solar panel is based on dye-sensitized solar cells, the dye-sensitized solar cells includes light anode, to electrode, electrolyte, which is a kind of composite structure light anode.

Description

A kind of advertisement distributing system based on application of solar energy
Technical field
This application involves outdoor advertising administrative skill field more particularly to a kind of ad distribution systems based on application of solar energy System.
Background technique
With the development of economic technology, traditional energy faces exhaustion, and requirement of the people to new energy is higher and higher, and exploitation is new The energy has become the urgent project that current mankind faces.Currently, new energy being developed includes: solar energy, wind energy, nuclear energy Deng, wherein solar energy is a kind of inexhaustible energy, and solar power generation is pollution-free, is a kind of comparatively ideal energy.
At this stage, there is wide application using solar energy power generating, for outdoor advertising system, if energy Enough effective uses are irradiated to sunlight thereon as its operating power source, can achieve purpose that is energy saving, reducing pollution.
Summary of the invention
The present invention is intended to provide a kind of advertisement distributing system based on application of solar energy, set forth above to solve the problems, such as.
A kind of advertisement distributing system based on application of solar energy, the advertisement distributing system are provided in the embodiment of the present invention Including advertising component, advertising control system, electric system;The advertising component includes display screen, display screen protective shell, Display location is inside display screen protective shell;The advertising control system includes data storage, information controller;Data storage Be used to store advertisement page information, the rotation that information controller is responsible for advertising information plays, and receive outer end information input with Control;The electric system is made of solar electric power supply system, electromechanical switches and mains system;The solar electric power supply system includes too Positive energy solar panel, solar controller, battery, inverter, solar panel can be located at bus platform ceiling, open air extensively Curtain wall ceiling position is accused, is connect respectively with battery, inverter through solar controller, electromechanical switches include battery voltage inspection It surveys device and selection switchs, electromechanical switches connection display screen and advertising control system, mains system and inverter all connect cutting and change Device;The solar panel is based on dye-sensitized solar cells, which includes light anode, to electricity Pole, electrolyte, the light anode are a kind of composite structure light anode, which includes electrically conducting transparent substrate, TiO2Composite construction Layer and TiO2Nanoscale twins;The TiO2Composite construction layer is set on electrically conducting transparent substrate surface, the TiO2Nanoscale twins are set to TiO2On composite construction layer.
The technical solution that the embodiment of the present invention provides can include the following benefits:
It is of the invention by solar power generation in conjunction with advertisement distributing system, and on the basis of existing technology, to light anode It is improved, which is a kind of composite structure light anode, including electrically conducting transparent substrate, TiO2Composite construction layer and TiO2 Nanoscale twins;Above-mentioned TiO2Composite construction layer and TiO2Nanoscale twins have good light scattering ability, enhance light anode Light capture rate, realizes based on TiO2The multifunction of light anode produces good effect to photoelectric conversion efficiency.
The additional aspect of the application and advantage will be set forth in part in the description, and will partially become from the following description It obtains obviously, or recognized by the practice of the application.It should be understood that above general description and following detailed description are only Be it is exemplary and explanatory, the application can not be limited.
Detailed description of the invention
The present invention will be further described with reference to the accompanying drawings, but the embodiment in attached drawing is not constituted to any limit of the invention System, for those of ordinary skill in the art, without creative efforts, can also obtain according to the following drawings Other attached drawings.
Fig. 1 is the structural schematic diagram of light anode of the present invention;
Wherein, 1- electrically conducting transparent substrate, 2-TiO2Composite construction layer, 3-TiO2Nanoscale twins.
Specific embodiment
Example embodiments are described in detail here, and the example is illustrated in the accompanying drawings.Following description is related to When attached drawing, unless otherwise indicated, the same numbers in different drawings indicate the same or similar elements.Following exemplary embodiment Described in embodiment do not represent all embodiments consistented with the present invention.On the contrary, they be only with it is such as appended The example of device and method being described in detail in claims, some aspects of the invention are consistent.
Embodiments herein is related to a kind of advertisement distributing system based on application of solar energy, which includes Advertising component, advertising control system, electric system;
Wherein, which includes display screen, display screen protective shell, and display location is in display screen protective shell Portion, the display screen protective shell can be applied to the regions such as bus platform, outdoor advertising curtain wall;
The advertising control system includes data storage, information controller;Data storage is used to store advertisement page letter Breath, the rotation that information controller is responsible for advertising information plays, and receives outer end information input and control;
The electric system is made of solar electric power supply system, electromechanical switches and mains system;The solar electric power supply system packet Solar panel, solar controller, battery, inverter are included, solar panel can be located at bus platform ceiling, family Outer advertisement curtain wall top canopy position is connect with battery, inverter respectively through solar controller, and electromechanical switches include battery electricity Detector and selection is pressed to switch, electromechanical switches connection display screen and advertising control system, mains system and inverter all connect electricity Switch.
Preferably, above-mentioned display screen is liquid crystal display;
Preferably, above-mentioned battery is open type stationary lead-acid storage battery.
In the technical solution of the application, which is based on dye-sensitized solar cells, and the dyestuff is quick Changing solar battery includes light anode, to electrode, electrolyte, wherein light anode encapsulates setting with to electrode is opposite, and electrolyte is set In light anode and between electrode, photoanode surface is adsorbed with dye sensitizing agent.
In the dye-sensitized solar cells of the application, this to electrode is formed in FTO substrate surface printing platinum electrode 's.
In the dye-sensitized solar cells of the application, the electrolyte preparation process are as follows: it is molten to weigh a certain amount of acetonitrile The lithium iodide of 0.1M, the iodine of 0.1M, the 4- tert .-butylpyridine of 0.6M and the tetrabutyl iodate of 0.6M is added in liquid thereto Ammonium, is then protected from light ultrasonic 10min, and magnetic agitation dissolves it sufficiently.
In the dye-sensitized solar cells of the application, which is a kind of composite structure light anode, specifically, knot Fig. 1 is closed, which includes electrically conducting transparent substrate 1, TiO2Composite construction layer 2 and TiO2Nanoscale twins 3;The TiO2Composite construction Layer is set on electrically conducting transparent substrate surface, the TiO2Nanoscale twins are set to TiO2On composite construction layer.
In the prior art, the critical component in dye-sensitized solar cells is light anode, which is equipped with dye Material, the light anode are usually that one layer of TiO is arranged in conductive substrates2Porous particle layer, however, single setting TiO2Porous Granulosa, the TiO2That there are porositys is low for porous particle layer, Dye Adsorption rate is low, the not high technical problem of specific surface area, is based on this, In the technical solution of the application, TiO is successively arranged in electrically conducting transparent substrate2Composite construction layer and TiO2Nanoscale twins, thus structure At a kind of double-layer structure light anode, the TiO2Composite construction layer includes a variety of nanoparticles, shows as biggish specific surface area, should TiO2Nanoscale twins equally show biggish specific surface area, meanwhile, above-mentioned TiO2Composite construction layer and TiO2Nanoscale twins have Good light scattering ability enhances the light capture rate of light anode, realizes based on TiO2The multifunction of light anode, to light Photoelectric transformation efficiency produces good effect.
Above-mentioned TiO2It include TiO in composite construction layer2Hollow sphere, WO3Nano particle, MnO2Nano particle, graphite Alkene, wherein above-mentioned each substance accounts for TiO2The mass percent of composite construction layer gross mass is respectively 60%, 18%, 15%, 7%.
Above-mentioned TiO2The spherical shell of hollow sphere is by TiO2It is nanocrystalline to reunite, show as biggish specific surface area and more Pore structure, these structures are for TiO2Composite construction layer has good effect, such as effective absorption, the expansion of electrolyte in dyestuff It dissipates and light scattering aspect has an impact;Wherein, TiO2Hollow ball structure is a kind of very promising optical anode material, compared to TiO2Particle has bigger specific surface area, and strong to the scattering power of light, however, TiO2Hollow sphere and conductive substrates Contact is bad, there are many gaps on contact interface, reduces the ability that conductive substrates collect electronics, and then lead to photoelectricity The decline of transfer efficiency.
To solve this problem, in the application, in TiO2Mixing is filled with graphene between hollow sphere, and graphene has very Big specific surface area, excellent mechanical performance and physical property, good electric conductivity, using graphene as the dye sensitization sun The technical solution of the optical anode material of energy battery is few;Additionally due to graphene shows single-layer or multi-layer laminated structure, it can TiO is repaired well2The bad problem of contact between hollow sphere and conductive substrates.
Meanwhile in TiO2Mixing is filled with WO between hollow sphere3Nano particle, WO3Nano material be it is a kind of have air-sensitive, The multifunctional semiconductor functional material of many characteristics such as electrochromism, gas-discoloration, superconduction, in addition, it also has infrared ray Certain absorption function, and dyestuff and TiO2Hollow sphere is more to the absorption of light to concentrate on ultraviolet and visible region, WO3Nanometer The addition of particle increases the light anode to the absorption frequency range of light, improves photoelectric conversion efficiency.
Further, the preparation process of above-mentioned composite structure light anode are as follows:
Step 1, transparent conduction base sheet selects FTO substrate, cut, be then placed in acetone, ethyl alcohol, in deionized water successively It is cleaned by ultrasonic 30min;
Step 2, Ti (SO is taken4)2It is added in distilled water, Ti (SO4)2Quality be 2.4g, distilled water 150ml, stirring 30min;Then the urea of the ammonium fluoride of 0.39g and 1.2g is added in above-mentioned solution, stirs 50min;After mixing evenly, will Above-mentioned solution is transferred in water heating kettle, hydro-thermal reaction 12h, and reaction temperature is 180 DEG C, to after reaction, collect in water heating kettle White precipitate, which is washed respectively and alcohol washes each 3 times, then dry 8h at 80 DEG C in a vacuum drying oven, is obtained To TiO2Hollow spherical powder;
Step 3, graphene is dissolved in acetone, in ultrasonic situation, is made it completely dissolved, the concentration of graphene is 15.9mg/ml;Then by TiO2Hollow spherical powder, WO3Nano particle, MnO2Nano particle and graphene solution obtained above It is uniformly mixed, obtains mixing material;Above-mentioned mixing material is spun in FTO substrate, placement two days or more until the mixing Material dries, and then under nitrogen protection, which is put into calcining furnace and calcines 9h at 520 DEG C, obtains TiO2It is compound Structure sheaf;
Step 4, Ti (OC is taken4H9)4It is added in the water heating kettle of 100ml polytetrafluoroethyllining lining and mixes with HF, wherein Ti (OC4H9)4For 25ml, HF 3ml, then by its 180 DEG C of hydro-thermals for 24 hours;After hydro-thermal, white depositions are collected, respectively With dehydrated alcohol and deionized water repeated flushing, 8h is dried finally, white depositions are transferred in vacuum oven at 80 DEG C, Obtain TiO2Nanometer sheet powder;
Step 5, above-mentioned TiO is taken2Nanometer sheet powder 1.7g, terpinol 5g, 10% ethyl cellulose ethanol solution 8.5g, dehydrated alcohol 25ml, above-mentioned substance are added in 50ml beaker, and magneton is put into beaker, low-grade fever stirring, until Ethyl alcohol volatilization becomes viscous syrup, and then the viscous syrup is coated in FTO substrate, is quickly scratched uniformly, is made with glass slide Slurry is uniformly sprawled, and after drying, is put it into 460 DEG C of annealing 40min, 490 DEG C of annealing 20min in Muffle furnace, calcining terminates Afterwards, TiO is obtained2Nanoscale twins, the as light anode of the application.
Embodiment 1
Step 1, transparent conduction base sheet selects FTO substrate, cut, be then placed in acetone, ethyl alcohol, in deionized water successively It is cleaned by ultrasonic 30min;
Step 2, Ti (SO is taken4)2It is added in distilled water, Ti (SO4)2Quality be 2.4g, distilled water 150ml, stirring 30min;Then the urea of the ammonium fluoride of 0.39g and 1.2g is added in above-mentioned solution, stirs 50min;After mixing evenly, will Above-mentioned solution is transferred in water heating kettle, hydro-thermal reaction 12h, and reaction temperature is 180 DEG C, to after reaction, collect in water heating kettle White precipitate, which is washed respectively and alcohol washes each 3 times, then dry 8h at 80 DEG C in a vacuum drying oven, is obtained To TiO2Hollow spherical powder;
Step 3, graphene is dissolved in acetone, in ultrasonic situation, is made it completely dissolved, the concentration of graphene is 15.9mg/ml;Then by TiO2Hollow spherical powder, MnO2Nano particle and graphene solution obtained above are uniformly mixed, and are obtained Mixing material;Above-mentioned mixing material is spun in FTO substrate, is dried until the mixing material within placement two days or more, then Under nitrogen protection, which is put into calcining furnace and calcines 9h at 520 DEG C, obtain TiO2Composite construction layer;
Step 4, Ti (OC is taken4H9)4It is added in the water heating kettle of 100ml polytetrafluoroethyllining lining and mixes with HF, wherein Ti (OC4H9)4For 25ml, HF 3ml, then by its 180 DEG C of hydro-thermals for 24 hours;After hydro-thermal, white depositions are collected, respectively With dehydrated alcohol and deionized water repeated flushing, 8h is dried finally, white depositions are transferred in vacuum oven at 80 DEG C, Obtain TiO2Nanometer sheet powder;
Step 5, above-mentioned TiO is taken2Nanometer sheet powder 1.7g, terpinol 5g, 10% ethyl cellulose ethanol solution 8.5g, dehydrated alcohol 25ml, above-mentioned substance are added in 50ml beaker, and magneton is put into beaker, low-grade fever stirring, until Ethyl alcohol volatilization becomes viscous syrup, and then the viscous syrup is coated in FTO substrate, is quickly scratched uniformly, is made with glass slide Slurry is uniformly sprawled, and after drying, is put it into 460 DEG C of annealing 40min, 490 DEG C of annealing 20min in Muffle furnace, calcining terminates Afterwards, TiO is obtained2Nanoscale twins, the as light anode of the application.
Using above-mentioned light anode, the photoelectric conversion efficiency of the dye-sensitized solar cells prepared using N719 as dyestuff reaches 7.54%.
Embodiment 2
Step 1, transparent conduction base sheet selects FTO substrate, cut, be then placed in acetone, ethyl alcohol, in deionized water successively It is cleaned by ultrasonic 30min;
Step 2, Ti (SO is taken4)2It is added in distilled water, Ti (SO4)2Quality be 2.4g, distilled water 150ml, stirring 30min;Then the urea of the ammonium fluoride of 0.39g and 1.2g is added in above-mentioned solution, stirs 50min;After mixing evenly, will Above-mentioned solution is transferred in water heating kettle, hydro-thermal reaction 12h, and reaction temperature is 180 DEG C, to after reaction, collect in water heating kettle White precipitate, which is washed respectively and alcohol washes each 3 times, then dry 8h at 80 DEG C in a vacuum drying oven, is obtained To TiO2Hollow spherical powder;
Step 3, graphene is dissolved in acetone, in ultrasonic situation, is made it completely dissolved, the concentration of graphene is 15.9mg/ml;Then by TiO2Hollow spherical powder, WO3Nano particle and graphene solution obtained above are uniformly mixed, and are obtained Mixing material;Above-mentioned mixing material is spun in FTO substrate, is dried until the mixing material within placement two days or more, then Under nitrogen protection, which is put into calcining furnace and calcines 9h at 520 DEG C, obtain TiO2Composite construction layer;
Step 4, Ti (OC is taken4H9)4It is added in the water heating kettle of 100ml polytetrafluoroethyllining lining and mixes with HF, wherein Ti (OC4H9)4For 25ml, HF 3ml, then by its 180 DEG C of hydro-thermals for 24 hours;After hydro-thermal, white depositions are collected, respectively With dehydrated alcohol and deionized water repeated flushing, 8h is dried finally, white depositions are transferred in vacuum oven at 80 DEG C, Obtain TiO2Nanometer sheet powder;
Step 5, above-mentioned TiO is taken2Nanometer sheet powder 1.7g, terpinol 5g, 10% ethyl cellulose ethanol solution 8.5g, dehydrated alcohol 25ml, above-mentioned substance are added in 50ml beaker, and magneton is put into beaker, low-grade fever stirring, until Ethyl alcohol volatilization becomes viscous syrup, and then the viscous syrup is coated in FTO substrate, is quickly scratched uniformly, is made with glass slide Slurry is uniformly sprawled, and after drying, is put it into 460 DEG C of annealing 40min, 490 DEG C of annealing 20min in Muffle furnace, calcining terminates Afterwards, TiO is obtained2Nanoscale twins, the as light anode of the application.
Using above-mentioned light anode, the photoelectric conversion efficiency of the dye-sensitized solar cells prepared using N719 as dyestuff reaches 8.31%.
Embodiment 3
Step 1, transparent conduction base sheet selects FTO substrate, cut, be then placed in acetone, ethyl alcohol, in deionized water successively It is cleaned by ultrasonic 30min;
Step 2, Ti (SO is taken4)2It is added in distilled water, Ti (SO4)2Quality be 2.4g, distilled water 150ml, stirring 30min;Then the urea of the ammonium fluoride of 0.39g and 1.2g is added in above-mentioned solution, stirs 50min;After mixing evenly, will Above-mentioned solution is transferred in water heating kettle, hydro-thermal reaction 12h, and reaction temperature is 180 DEG C, to after reaction, collect in water heating kettle White precipitate, which is washed respectively and alcohol washes each 3 times, then dry 8h at 80 DEG C in a vacuum drying oven, is obtained To TiO2Hollow spherical powder;
Step 3, graphene is dissolved in acetone, in ultrasonic situation, is made it completely dissolved, the concentration of graphene is 15.9mg/ml;Then by TiO2Hollow spherical powder, WO3Nano particle, MnO2Nano particle and graphene solution obtained above It is uniformly mixed, obtains mixing material;Above-mentioned mixing material is spun in FTO substrate, placement two days or more until the mixing Material dries, and then under nitrogen protection, which is put into calcining furnace and calcines 9h at 520 DEG C, obtains TiO2It is compound Structure sheaf;
Step 4, Ti (OC is taken4H9)4It is added in the water heating kettle of 100ml polytetrafluoroethyllining lining and mixes with HF, wherein Ti (OC4H9)4For 25ml, HF 3ml, then by its 180 DEG C of hydro-thermals for 24 hours;After hydro-thermal, white depositions are collected, respectively With dehydrated alcohol and deionized water repeated flushing, 8h is dried finally, white depositions are transferred in vacuum oven at 80 DEG C, Obtain TiO2Nanometer sheet powder;
Step 5, above-mentioned TiO is taken2Nanometer sheet powder 1.7g, terpinol 5g, 10% ethyl cellulose ethanol solution 8.5g, dehydrated alcohol 25ml, above-mentioned substance are added in 50ml beaker, and magneton is put into beaker, low-grade fever stirring, until Ethyl alcohol volatilization becomes viscous syrup, and then the viscous syrup is coated in FTO substrate, is quickly scratched uniformly, is made with glass slide Slurry is uniformly sprawled, and after drying, is put it into 460 DEG C of annealing 40min, 490 DEG C of annealing 20min in Muffle furnace, calcining terminates Afterwards, TiO is obtained2Nanoscale twins, the as light anode of the application.
Using above-mentioned light anode, the photoelectric conversion efficiency of the dye-sensitized solar cells prepared using N719 as dyestuff reaches 9.68%.
The foregoing is merely preferred modes of the invention, are not intended to limit the invention, all in spirit and original of the invention Within then, any modification, equivalent replacement, improvement and so on be should all be included in the protection scope of the present invention.

Claims (7)

1. a kind of advertisement distributing system based on application of solar energy, which includes advertising component, advertisement control System processed, electric system;The advertising component includes display screen, display screen protective shell, and display location is in display screen protective shell It is internal;The advertising control system includes data storage, information controller;Data storage is used to store advertisement page information, The rotation that information controller is responsible for advertising information plays, and receives outer end information input and control;The electric system is by the sun It can power supply system, electromechanical switches and mains system composition;The solar electric power supply system includes solar panel, solar control Device, battery, inverter, solar panel is located at bus platform ceiling, outdoor advertising curtain wall ceiling position, through solar energy control Device processed is connect with battery, inverter respectively, and electromechanical switches include that battery voltage detector and selection switch, and electromechanical switches connect Display screen and advertising control system are connect, mains system and inverter all connect electromechanical switches;It is characterized in that, the solar battery Plate is based on dye-sensitized solar cells, which includes light anode, to electrode, electrolyte, the light Anode is a kind of composite structure light anode, which includes electrically conducting transparent substrate, TiO2Composite construction layer and TiO2Nanometer sheet Layer;The TiO2Composite construction layer is set on electrically conducting transparent substrate surface, the TiO2Nanoscale twins are set to TiO2Composite construction layer it On;
The preparation process of above-mentioned composite structure light anode are as follows:
Step 1, transparent conduction base sheet selects FTO substrate, is cut, is then placed in acetone, ethyl alcohol, is successively ultrasonic in deionized water Clean 30min;
Step 2, Ti (SO is taken4)2It is added in distilled water, Ti (SO4)2Quality be 2.4g, distilled water 150ml, stirring 30min;Then the urea of the ammonium fluoride of 0.39g and 1.2g is added in above-mentioned solution, stirs 50min;After mixing evenly, will Above-mentioned solution is transferred in water heating kettle, hydro-thermal reaction 12h, and reaction temperature is 180 DEG C, to after reaction, collect in water heating kettle White precipitate, which is washed respectively and alcohol washes each 3 times, then dry 8h at 80 DEG C in a vacuum drying oven, is obtained To TiO2Hollow spherical powder;
Step 3, graphene is dissolved in acetone, in ultrasonic situation, is made it completely dissolved, the concentration of graphene is 15.9mg/ ml;Then by TiO2Hollow spherical powder, WO3Nano particle, MnO2Nano particle and graphene solution obtained above mixing are equal It is even, obtain mixing material;Above-mentioned mixing material is spun in FTO substrate, is dried in the air until the mixing material within placement two days or more It is dry, then under nitrogen protection, which is put into calcining furnace and calcines 9h at 520 DEG C, obtains TiO2Composite construction Layer;
Step 4, Ti (OC is taken4H9)4It is added in the water heating kettle of 100ml polytetrafluoroethyllining lining and mixes with HF, wherein Ti (OC4H9)4For 25ml, HF 3ml, then by its 180 DEG C of hydro-thermals for 24 hours;After hydro-thermal, white depositions are collected, respectively With dehydrated alcohol and deionized water repeated flushing, 8h is dried finally, white depositions are transferred in vacuum oven at 80 DEG C, Obtain TiO2Nanometer sheet powder;
Step 5, above-mentioned TiO is taken2Nanometer sheet powder 1.7g, terpinol 5g, 10% ethyl cellulose ethanol solution 8.5g, nothing Above-mentioned substance is added in 50ml beaker, and is put into magneton in beaker by water-ethanol 25ml, low-grade fever stirring, until ethyl alcohol is waved Hair becomes viscous syrup, and then the viscous syrup is coated in FTO substrate, is quickly scratched uniformly with glass slide, keeps slurry equal It is even to sprawl, after drying, puts it into Muffle furnace in 460 DEG C of annealing 40min, 490 DEG C of annealing 20min, after calcining, obtain TiO2Nanoscale twins, the as light anode.
2. advertisement distributing system according to claim 1, which is characterized in that above-mentioned TiO2In composite construction layer, include TiO2Hollow sphere, MnO2Nano particle, graphene.
3. advertisement distributing system according to claim 1, which is characterized in that above-mentioned TiO2In composite construction layer, include TiO2Hollow sphere, WO3Nano particle, graphene.
4. advertisement distributing system according to claim 1, which is characterized in that above-mentioned TiO2In composite construction layer, include TiO2Hollow sphere, WO3Nano particle, MnO2Nano particle, graphene.
5. advertisement distributing system according to claim 4, which is characterized in that above-mentioned TiO2In composite construction layer, TiO2It is empty Bulbus cordis, WO3Nano particle, MnO2Nano particle, graphene account for TiO2The mass percent of composite construction layer gross mass is respectively 60%, 18%, 15%, 7%.
6. advertisement distributing system according to claim 1, which is characterized in that above-mentioned display screen is liquid crystal display.
7. advertisement distributing system according to claim 1, which is characterized in that above-mentioned battery is open type fixed lead Battery.
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