A combined team of chemists and nano-scientists at Cornell University has developed a wireless microelectronic device powered ...
they turn the huge surface area of the resulting structure into a conductive electrode suffused with charged ions. This can be used as a plate of a supercapacitor, separated from another similar ...
The electrodes are designed to be soft like nerves, stretchable, and electrically conductive, and they are expected to have a ...
Their goal was to address the limitations of traditional ePTFE electrodes by incorporating micrometric conductive wires that connect the catalyst layer to the current collector. This design ...