Tech Xplore on MSN
Lithium-air batteries break performance barriers thanks to a newly developed 2D catalyst
As the electric vehicle and energy storage system (ESS) markets experience rapid growth, the development of next-generation ...
A variety of hydrogen sources (e.g., water, alcohols, formic acid, etc.) can be used in the reported SACs for TH. They are also capable of performing a variety of hydrogenation reactions. In a ...
Interesting Engineering on MSN
Breakthrough lithium-air battery tech promises 10x energy density, longer EV range
Scientists have developed a new catalyst technology that could significantly improve the performance and ...
Atomically dispersed catalysts have received extensive research attention, because they exhibit excellent activity and unique selectivity for many important catalytic reactions. The atomically ...
Catalytic hydrogenation is a cornerstone process in chemical manufacturing, particularly in the production of hydrogen peroxide via the anthraquinone process. This approach involves the selective ...
In chemical processes for producing pharmaceuticals, catalysts are a core technology that determines production speed and ...
When it comes to catalytic activity, more isn’t always better. Overly active catalysts may be hard to control; finding the sweet spot can be tricky. That job may be easier now thanks to a study ...
Lithium-oxygen, or lithium-air batteries are one of many pathways to improving on today’s energy storage technologies. Lithium, and other metal-air batteries are favored in research for their ...
Some results have been hidden because they may be inaccessible to you
Show inaccessible results