Remove Energy Storage Remove MIT Remove Motor Remove Recharge
article thumbnail

MIT research team finds most efficient oxygen evolution reaction catalyst yet; potential for hydrogen production and rechargeable metal-air batteries

Green Car Congress

A team of MIT researchers lead by Prof. John Goodenough from the University of Texas as Austin, has found one of the most effective catalysts yet discovered for the oxygen evolution reaction (OER) for use in water-splitting to produce hydrogen or in rechargeable metal-air batteries. pursuit of sustainable energy. Mx + O 2 ).

MIT 326
article thumbnail

Stretchable Batteries Make Flexible Electronics More So

Cars That Think

The stretchable battery is gaining momentum in the electronics industry, where it might one day serve as an energy storage medium in fitness trackers, wearable electronics, and even smart clothing. The battery is not rechargeable, and its applications include medical patches and hearing aids.

article thumbnail

ARPA-E Selects 37 Projects for $106M in Funding in Second Round; Electrofuels, Better Batteries and Carbon Capture

Green Car Congress

The US Department of Energy is awarding $106 million in funding for 37 research projects selected in the second round by the DOE’s Advanced Research Projects Agency-Energy (ARPA-E). The aerobic microbe has been engineered at MIT and is capable of converting a variety of organic compounds into oil, from which biodiesel may be produced.

Carbon 249
article thumbnail

False Starts: The Story of Vehicle-to-Grid Power

Cars That Think

Around the same time, however, General Motors and other automakers were in the process of decommissioning their battery EV fleets, the key component of V2G. The need for large-scale electrochemical energy storage as a grid-stabilizing source of demand disappeared. General Motors’ Impact debuted at the 1990 Los Angeles Auto Show.

Grid 137
article thumbnail

MIT Battery Breakthrough Could Revolutionize Electric Cars : Gas 2.0

Tony Karrer Delicious EVdriven

The discovery came when MIT researchers Byoungwoo Kang and Gerbrand Ceder found out how to get a common lithium compound to release and take up lithium ions in a matter of seconds. 3 David Herron said on March 16th, 2009 at 12:31 am Fast recharge will require huge power levels. Like this post? This is a drop in the bucket.

MIT 45
article thumbnail

MIT Researchers Find That Elastic Energy Storage Systems Built With Carbon Nanotubes Could Match Li-ion Battery Energy Densities

Green Car Congress

Energy density of single-walled CNT (SWCNT) bundles under tensile loading with support structures made of single crystal diamond, silicon and silicon carbide. the molecular scale, CNTs can function as mechanical springs that store a great deal of energy for their size due to their networks of strong carbon–carbon bonds. Hill et al.

article thumbnail

DOE ARPA-E awards $156M to projects to 60 projects to accelerate innovation in clean energy technologies

Green Car Congress

contains no rare earths, in a prototype electric motor. Energy Laboratory, SuperPower, Tai-Yang. Research, TECO Westinghouse Motor. Motors Research and. Advanced Electric Vehicle Motors with Low or No Rare Earth. motor with the potential to efficiently power future. If successful. Dartmouth College.

Energy 294