Graphene-based Electrode Leads to Highest Capacity Lithium-Air Batteries
New approach to molecular self-assembly produces porous, thin films of carbon (aka graphene), enabling high-capacity electrodes for lithium-air batteries.
New approach to molecular self-assembly produces porous, thin films of carbon (aka graphene), enabling high-capacity electrodes for lithium-air batteries.
Understanding the interaction of uranium in soils may lead to new ways to clean-up contaminated ground.
Understanding ceramic chemistry leads the way to a new remediation technology