A team of researchers from the US have developed a simple chemical method that protects against lithium-ion battery aging.
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Transient electroluminescence helps explain how perovskite LEDs work under high current
The review discusses transient electroluminescence (TrEL) as a tool for analyzing carrier dynamics and efficiency roll-off in ...
Rolling MXene sheets into scrolls at gram scale yields 33-fold conductivity gains and superconductivity at 5.2 K absent in ...
CERN's ALICE experiment has resolved the puzzle of deuteron formation, showing that most deuterons form via resonance-driven ...
To solve this problem, the BAM team developed an innovative core-shell design for the anode. “We realized that large storage ...
The work, led by Chunsheng Wang at the University of Maryland, offers a relatively simple way to make lithium-ion batteries more durable using standard materials and ...
Sodium-ion batteries are considered a promising, sustainable alternative to lithium-ion batteries. However, high storage ...
Interesting Engineering on MSN
Cheap core-shell anode pushes sodium-ion battery efficiency to 82% on first charge
Researchers in Germany have unveiled a low-cost anode that achieved an initial efficiency of ...
A spray-applied nanocomposite coating kills over 99.99% of bacteria on touchscreens while resisting scratches, combining ...
Calcium oxalate stones comprise greater than 70% of all kidney stones. In the current conceptual framework, the initial stone ...
A new battery technology has been developed that delivers significantly higher energy storage — enough to alleviate EV's range concerns — while lowering the risk of thermal runaway and explosion.
Researchers have identified a new physicochemical principle governing liquid–liquid phase separation in polymer solutions.
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