These results provide a design plan for battery materials. The use of Mg4C60 could lead to batteries that support fast ...
Lithium-ion batteries can become unstable under certain conditions, leading to fires. Now, researchers have used new materials that they say can make batteries safer.
Lithium-ion batteries (LiBs) remain the most widely used rechargeable batteries worldwide, due to their light weight, high ...
Elevating the sintering temperature from 850 to 900°C transform the lithium-manganese-rich cathode from solid-solution structure to chemical separated two-phase structure, which is triggered by the ...
An international team of researchers has found a way to extend the lifespan of lithium-ion (Li-ion) batteries by suppressing ...
Researchers created a covalently bridged fullerene framework, which shows that carbon can store lithium in a completely different and much more stable way, avoiding structural collapse and preventing ...
Lithium iron phosphate (LiFePO 4) is a compound salt with an olivine (LiMPO 4) structure that has a particular application in battery cathodes. The substance was first reported in the chemical ...
As the world moves toward cleaner energy and electric technologies, better batteries are becoming more important than ever.