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​Researchers unveil tailored LIG electrodes for industrial applications 

A research team from the Materials and Processes for Micro and Nano Technologies (MP4MNT) group at the Department of Applied Science and Technology (DISAT) has developed new laser-induced graphene (LIG) electrodes that are adaptable to users’ requirements and “easy” to manufacture. Their patented invention is now available to manufacturers and innovation partners. 

Team leader Prof. Marzia Quaglio and researcher Giulia Massaglia explain that, relying on previous experience in flexible sensors and energy and gas transport, they arrived at a way to produce tridimensional LIG electrodes that are conductive in all three dimensions and selectively porous to allow fluid transportation.

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A research team from the Materials and Processes for Micro and Nano Technologies (MP4MNT) group at the Department of Applied Science and Technology (DISAT) has developed new laser-induced graphene (LIG) electrodes that are adaptable to users’ requirements and “easy” to manufacture. Their patented invention is now available to manufacturers and innovation partners. Team leader Prof. Marzia Quaglio and researcher Giulia Massaglia explain that, relying on previous experience in flexible sensors and energy and gas transport, they arrived at a way to produce tridimensional LIG electrodes that are conductive in all three dimensions and selectively porous to allow fluid transportation. 

Read More Graphene-Info – Graphene industry portal