On a laboratory scale, the probability of magnesium batteries utilizing a new compound as a cathode has been studied by a research group from the University of Córdoba (UCO). This was done in collaboration with the University of Xiamen and the Bulgarian Academy of Sciences.
Numerous plastics that are termed biodegradable are not compostable under industrial conditions. However, researchers at the University of Bath have currently discovered an approach to breaking down plastics with the help of UV light.
Usage of enzyme electrodes is found in numerous applications, such as electrochemical devices and biosensing systems. Especially, biofuel cells (BFCs) are potential candidates for powering a range of bioelectronic devices by transforming biochemical energy into electricity under mild biological conditions.
Researchers at Florida State University's Center for Advanced Power Systems (CAPS), in collaboration with Colorado-based Advanced Conductor Technologies, have demonstrated a new, ready-to-use superconducting cable system -- an improvement to superconductor technology that drives the development of technologies such as all-electric ships or airplanes.
Scientists achieve important milestone in making quantum computing more effective.
Dr. Edwin L. Thomas, professor in the Department of Materials Science and Engineering, and a team of researchers from Texas A&M University and Yonsei University recently discovered a helicoidal-shaped defect in layered polymers, uncovering how solvents can diffuse through layers and produce color changes.
University of Cincinnati biologists found that a double layer of silk in combination with a surgical mask can enhance its ability to prevent the spread of viruses like COVID-19.
In an article recently published in the journal Bioactive Materials, researchers discussed the utility of nano-calcium silicate mineralized fish scale scaffolds for enhancing tendon-bone healing.
Scientists from Columbia University’s Department of Mechanical Engineering have reported an innovative approach for embedding active electronic components into devices during selective laser printing, an additive manufacturing process.
Room-temperature superconductors could transform everything from electrical grids to particle accelerators to computers – but before they can be realized, researchers need to better understand how existing high-temperature superconductors work.
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