A new microscopy technique allows scientists to see single-atom-thick boron nitride by making it glow under infrared light.
A dissertation study at the University of Jyväskylä (Finland) developed two-dimensional fishnet-like structures from DNA ...
Researchers have captured real-time "molecular movies" showing how an enzyme changes shape during catalysis. The study was ...
Interesting Engineering on MSN
New method stabilizes nickel-rich battery cathodes, extends lithium-ion lifespan
Researchers have found that electrochemical tuning of Ni-rich cathodes can suppress structural collapse and extend Li-ion ...
Tech Xplore on MSN
Electrochemical tuning of Ni-rich cathodes curbs c-collapse, enhancing lithium-ion battery durability
Lithium-ion batteries (LiBs) remain the most widely used rechargeable batteries worldwide, due to their light weight, high ...
Ocean Optics reports on how spectroscopy revolutionizes research by utilizing light to analyze materials, improving accuracy ...
A five-element ceramic aerogel compresses by 98% and recovers its shape from cryogenic to 1500 degrees C temperatures, ...
Twisted graphene heterostructures detect temperature with 99% accuracy, reduce thermal image errors by 46%, and execute logic ...
Morning Overview on MSN
New state of matter acts like a solid and a liquid at once
Physicists are now watching matter behave in a way that defies everyday intuition, with atoms and even light itself arranging ...
Over on ScienceDaily we learn that an international team of scientists have turned a common semiconductor germanium into a superconductor. Researchers have been able to make the semiconductor ...
Interesting Engineering on MSN
Twist it, torch it, and freeze it: China’s new ceramic springs back even from 2,732°F
Engineers have created a ceramic aerogel that compresses by 98%, rebounds elastically, and insulates from cryogenic cold to 1 ...
Duplicates of crystal structures are flooding databases, implicating repositories hosting organic, inorganic, and ...
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