Building Energy Efficiency: WO3 Electrochromic Glass

building energy efficiency: WO3 electrochromic glass image

WO3 electrochromic glass is mainly used for building energy efficiency. Such smart glass can be applied to architectural glass, which can achieve the effect of heat insulation and heat preservation. Therefore, tungsten trioxide smart glass is also known as a new building energy-saving glass, which has also become the development direction of building energy-saving glass.

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Ti-doped Tungsten Trioxide Electrochromic Film

Ti-doped tungsten trioxide electrochromic film image

Ti-doped tungsten trioxide electrochromic film can be prepared by sputter deposition method. Some experts use metal tungsten-titanium alloy (mass fraction of titanium is 6%) as the target, and deposit a titanium doped tungsten trioxide (WO3: Ti) film on a FTO transparent conductive glass substrate by pulsed DC power supply using a coating machine.

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Ti-doping WO3 Electrochromic Film

Ti-doping WO3 electrochromic film image

The experts used metal tungsten and tungsten-titanium alloy targets to prepare Ti-doping WO3 electrochromic film by pulsed DC reactive magnetron sputtering method.

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Li-doping Tungsten Trioxide Electrochromic Film

Li-doping tungsten trioxide electrochromic film image

Some experts used an ultraviolet-visible spectrophotometer to measure the optical contrast of a Li-doping tungsten trioxide electrochromic film before and after discoloration.

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Electrochromism: Li-doping WO3 Film

When it comes to electrochromism, especially inorganic electrochromic materials, many people think of tungsten trioxide, and some people think of doped tungsten oxide films, among which Li-doping WO3 films are also expected to occupy a place. Certainly, there are also some people who think of the electrochemical performance test of Li-doped tungsten oxide film.

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Li-doping WO3 Electrochromic Film

Li-doping WO3 electrochromic film image

Li-doping WO3 electrochromic film has received much attention and research with the pure tungsten trioxide films. That is because they all play an important role in the research of electrochromic materials and devices with the characteristics of high coloring efficiency, good reversibility, long memory time and other excellent electrochromic properties.

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TiO2 Seed Layer: WO3 Electrochromic Film

TiO2 seed layer: WO3 electrochromic film image

Some experts have used the TiO2 seed layer instead of WO3 seed layer to prepare the WO3 electrochromic film by hydrothermal method. Recently, research on the preparation of tungsten trioxide films by hydrothermal method or solvothermal method has focused on the improvement of hydrothermal film forming processes. Some experts have prepared an electrochromic film of tungsten trioxide by hydrothermal process with the advantages of large light modulation range and high coloring efficiency by replacing WO3 with TiO2 as the seed layer of hydrothermal growth film.

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Tungsten Trioxide Film Applied for FTO Conductive Glass

tungsten trioxide film applied for FTO conductive glass image

The tungsten trioxide film prepared on the FTO conductive glass has excellent photochromic property and electrochromic property. Some experts have produced such a WO3 electrochromic film. Specifically, the preparation method is as follows:

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Tungsten Trioxide Applied for Conductive Glass

tungsten trioxide applied for conductive glass image

Tungsten trioxide, mainly ordered nanostructured WO3, has the characteristics of nanomaterials and outstanding quantum effects, and exhibits outstanding properties in electrophotochromic, photochromic and other optoelectronic properties. So, WO3 can be applied to conductive glass, such as, FTO conductive glass, ITO conductive glass, ITO/PET flexible conductive substrate, and conductive glass of glass and metal.

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Monoclinic Phase Tungsten Trioxide Nanosheet Applied for Electrochromic Film

monoclinic phase tungsten trioxide nanosheet applied for electrochromic film picture

Monoclinic phase tungsten trioxide nanosheet can be used to prepare electrochromic film. The obtained WO3 film has good nanosheets morphology and less cracks. In other words, the photoelectric property of the film is good as the defects on the interface are reduced, the probability of recombination of electrons and holes is reduced, the probability of recombination of electrons and holes is reduced, and the impedance of electrons transport in the film is reduced. The following describes a method for preparing a tungsten trioxide electrochromic film which is simple in equipment, simple in operation, and capable of meeting industrial production.

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