A research team has developed an innovative technology to dramatically improve the charging speed of lithium–sulfur batteries. The team used a new...
Vous n'êtes pas connecté
Lithium-sulfur batteries have a number of advantages over conventional lithium batteries: they use the abundant raw material sulfur, do not require the critical elements cobalt or nickel, and can achieve extremely high specific energy densities. Prototype cells are already achieving up to 500 Wh/kg, almost twice as much as current lithium-ion batteries.
A research team has developed an innovative technology to dramatically improve the charging speed of lithium–sulfur batteries. The team used a new...
A research team at the Paul Scherrer Institute PSI has developed a new sustainable process that can be used to improve the electrochemical performance...
The trade war issue between the United States and China has caused the Asian country to restrict the export of rare earth materials from their country...
Lithium-ion batteries are essential for powering electric vehicles, smartphones, and energy storage systems. However, one big challenge is making...
Most solids expand as temperatures increase and shrink as they cool. Some materials do the opposite, expanding in the cold. Lithium titanium phosphate...
Lithium-ion batteries are crucial for powering electric vehicles and storing renewable energy. However, many people worry about the safety of the...
Flow batteries can feed energy back to the grid for up to 12 hours – much longer than lithium-ion batteries which only last four to six hours.
Lithium-ion batteries are widely viewed as a necessity for meeting our growing energy demands while reducing our dependence on fossil fuels. So far,...
Lithium-ion batteries are widely viewed as a necessity for meeting our growing energy demands while reducing our dependence on fossil fuels. So far,...
There's a reason that electric vehicles (EV) in salvage yards are kept by themselves and spaced far apart. Their lithium-ion batteries can hold a lot...