Not long ago, an Australian research institute developed a thin, paper-like solar cell using 3D printing technology. Recently, Oxolutia of Spain has also developed a brand new photocell, Solar Oxides, using this current global technology. Made of conductive oxide, this battery is non-toxic and very stable. Since the required materials are abundant in nature, the price is also very low. If it can be mass-produced, it will likely make solar energy at a low cost a reality.
SolarOxides is made in 3D printing using unprocessed materials, which is economical, fast and many other advantages compared to traditional methods of manufacturing single crystal silicon. At the moment when fossil energy is depleted, this technological breakthrough will undoubtedly meet the growing demand for environmental protection, stability, safety and efficiency in the energy sector, and play an important role in many fields such as transportation, medical care and communication.
The battery developer Oxolutia belongs to the Barcelona Institute of Materials Science (ICMAB). The agency's goal is to bring results and superconductivity and nanomaterials to market while leading research. According to China's 3D printing first interactive media platform, the Antarctic bear understands that in order to develop this new battery, the engineering team used inkjet 3D printing technology. This technology is capable of depositing liquid onto the surface of an object and then fabricating an oxide film by combining chemical solution deposition methods that are required for solar cells.
Due to its promising potential, Solar Oxides has been selected as one of the nine winning projects of the 2015 Fundación Repsol Venture Fund. These projects will not only receive a maximum of 2 years of funds of 288,000 euros, but also get help from the mentor and professional training, as well as technical and legal advice, so that they can more quickly commercialize their projects. And bring it to market.
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