Energy storage
Research update: Team observes real-time charging of a lithium-air battery
May 13, 2013
Imaging reveals what happens during charging; could lead to improved batteries for electric cars.
The case for optimism about a renewable energy future
May 1, 2013
Researcher Eric Martinot presents findings of two-year project at campus event
Wind power — even without the wind
April 25, 2013
Innovative storage system could enable offshore wind farms to deliver power whenever it’s needed.
A novel ultracapacitor
October 9, 2012
Energy when and where you need it.
New technique reveals lithium in action
October 8, 2012
Fundamental reactions behind advanced battery technology, revealed in detail by advanced imaging method, could lead to improved materials.
Liquid batteries could level the load
February 14, 2012
MIT team makes progress toward goal of inexpensive grid-scale batteries that could help make intermittent renewable energy sources viable.
Revealing how a battery material works
February 8, 2012
MIT team uncovers a reason why the hottest new material for rechargeable batteries works so well.
Also labeled: Automobiles, Batteries, Chemistry and chemical engineering, Energy, Lithium-ion, Materials science, Mathematics, Recharging
Solving energy problems, one molecule at a time
January 26, 2012
Materials scientist explores new possibilities in topics from molecules to rooftop solar panels.
Highly efficient oxygen catalyst found
October 28, 2011
New catalyst, made of inexpensive and abundant materials, could prove useful in rechargeable batteries and hydrogen-fuel production.
Harnessing the Earth, the atom and the leaf
October 27, 2011
There are many sources that can make a contribution to our energy supply, but likely not at a major scale in the near future.
‘Artificial leaf’ makes fuel from sunlight
September 30, 2011
Solar cell bonded to recently developed catalyst can harness the sun, splitting water into hydrogen and oxygen.
Findings could lead to better hydrogen storage
September 19, 2011
MIT-led research demonstrates method that could allow inexpensive carbon materials to store the volatile gas at room temperature.
A systematic way to find battery materials
August 12, 2011
New understanding of high-performing cathode compound could facilitate rapid evaluation of improved alternatives.
Research update: Improving batteries’ energy storage
July 25, 2011
New method allows a dramatic boost in capacity for a given weight.
How to choose a catalyst
June 13, 2011
MIT researchers provide a simple principle to predict which materials will perform best in fuel cells and metal air batteries.
New battery design could give electric vehicles a jolt
June 6, 2011
Significant advance in battery architecture could be breakthrough for electric vehicles and grid storage.
Energy Initiative announces new seed grant awards
April 20, 2011
More than $2 million awarded to 14 projects
Electrifying transportation: Devil is in the details
January 24, 2011
MIT symposium finds electric vehicle technology capabilities are way ahead of policy and infrastructure needs.
Doğutan, Nocera win award for microwave research
September 29, 2010
Postdoc, advisor recognized for significant contributions to renewable energy research
Also labeled: Awards, honors and fellowships, Chemistry and chemical engineering, Eni, Industry, Staff
Don Sadoway on innovation in energy storage
July 19, 2010
"What I Learned in 3.091 was All I Needed to Know" from Technology Day 2010
Thin films show surprising reactivity
June 24, 2010
MIT findings of high oxygen activity in thin-film materials might someday lead to greatly increased power production from future fuel cells
Enhancing the power of batteries
June 18, 2010
MIT team finds that using carbon nanotubes in a lithium battery can dramatically improve its energy capacity.
New water-splitting catalyst found
May 14, 2010
Research by MIT’s Dan Nocera expands the list of potential electrode materials that could be used to store energy.
Viruses harnessed to split water
April 12, 2010
MIT team’s biologically based system taps the power of sunlight directly, with the aim of turning water into hydrogen fuel.
Also labeled: Bioengineering and biotechnology, Energy, Environment, Materials science, Alternative energy, Solar, Eni























