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Brite is focusing on enabling mass production of innovative, transparent photovoltaic panels which can be integrated as windows in homes and office buildings.
In order to reach our goal we are working on the development and establishment of our production technology in industrial scale achieving commercially desirable panel efficiency at a competitive cost vs thin film technology, for the different color PV transparent modules.

The key to our technology is the use of a solid electrolyte as opposed to liquid-electrolyte competing technologies, which suffer of instability and long term reliability problems for the end product. This technology will commercially produce the first solar cells with competitive performance and cost, based on a solid electrolyte and a transparent dye, giving significant technological advantage to the resulting solar panels.
 
Brite develops the process technology for the construction of photo-electrochemical solid solar cells based on new composite organic / inorganic lightweight nanostructured materials, which, in their majority, are deposited by a purely chemical process at ambient conditions.

 

click on photos below to enlarge

 
       

Novel nanotechnological routes are followed to develop semiconductors with small particle size and also maintain the transparency of the solar windows in high level.

Exploitation of the visible region of light by solar windows is succeeded by semiconductor photosensitization with organic dyes of high extinction coefficient.

Nanocomposite transparent semiconductor films of different particle sizes can easily be developed.

Cross section of a transparent solar cell
       

Novel nanocomposite gel electrolytes are developed promising durable and stable solar cells compared to current technologies
     
       

 
 




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