AIXTRON partner in the GraFunkL research project: use of graphene in UVC LEDs to combat multi-resistant pathogens
Source: EQS
AIXTRON partner in the GraFunkL research project: use of graphene in UVC[1] LEDs to combat multi-resistant pathogens Herzogenrath, Ultraviolet (UV) radiation has been used to combat multi-resistant germs for more than 100 years. When UV rays with a specific wavelength (265 to 286 nanometers) hit viruses or bacteria, they destroy the chemical bonds – including the DNA of the pathogens. Conventional methods are based on mercury vapor lamps. Semiconductor-based UV radiation sources are not only more durable, but also free of toxic mercury. In addition, they are characterized by their small size and low weight, which is why they are also very well suited for mobile use. “What is innovative about the project is the direct deposition of graphene on the UVC LED wafer. These new photonic components are suitable for a range of applications, including the decontamination of microbially contaminated indoor air, wastewater or surfaces,” explains Prof. Dr. The use of graphene improves both energy efficiency and light output. A layer of carbon just one atom thick, with high electrical conductivity and high optical transparency, is integrated into the UVC LEDs, thereby increasing the efficiency of the light-emitting diodes. Another key objective of the GraFunkL project is to develop a platform that makes it possible to apply graphene over a large area – i.e. with wafers up to 150 millimeters in diameter. This, in turn, should be integrated into an industrial production line for UVC LEDs. The production of larger quantities, in combination with the improved efficiency of the novel UVC LEDs, forms the basis for a greater use and dissemination of this technology – for example in the medical field. In addition, the project will also provide insights into graphene growth on non-metallic substrates. Contact
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EQS News ID: | 2105362 |
End of News | EQS Media |
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2105362 25.03.2025 CET/CEST