In an article recently published in the journal ACS Applied Energy Materials, researchers discussed the development of high-performance silicon anodes in lithium (Li)-ion batteries with chitosan-grafted-gallic acid as a nature-inspired multifunctional binder.
Mechanical actuators are devices that generate and transfer energy into the machines and systems that are used every day. In spite of a century of research, actuators are still unable to match the dexterity, power density, and efficiency of biological muscles.
As a result of lithium-sulfur (Li-S) batteries’ huge energy capacity, it provides great potential for use in energy storage systems.
In the days to come, decarbonized societies utilizing internet of things (IoT) devices will turn out to be commonplace.
By 2030, solar power has been anticipated to reach 10% of global power generation, and much of that is probably to be situated in desert areas, where sunlight is ample.
In the recent study published in the journal Molecules, researchers studied the characterization and growth of graphene on different types of copper (Cu) surfaces.
In a review recently published in the open-access journal Materials, researchers presented a detailed discussion on the development and upgrading of recovered carbon black through pyrolysis of end-of-life tires.
Researchers from Portugal have reported the eco-friendly synthesis of bacterial cellulose films, a functional bioactive material which has potential applications in fields including biomedicine.
A problem in materials design is that in natural as well as artificial materials, volume occasionally drops, or surges, with rising temperature. While there are mechanical reasons for this occurrence for certain materials, a general insight into why this occasionally occurs is still lacking.
Writing in the Journal of the American Chemical Society, a team of researchers from Spain have investigated the synthesis and properties of Aza-Triangulene. Their study opens the possibility of fabricating novel hydrocarbon structures including reactive open-shell molecules for cutting-edge applications in advanced materials science research.
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