Space Travel News  
MIT Creates New Material For Fuel Cells

-
by Staff Writers
Boston MA (SPX) May 19, 2008
MIT engineers have improved the power output of one type of fuel cell by more than 50 percent through technology that could help these environmentally friendly energy storage devices find a much broader market, particularly in portable electronics.

The new material key to the work is also considerably less expensive than its conventional industrial counterpart, among other advantages.

"Our goal is to replace traditional fuel-cell membranes with these cost-effective, highly tunable and better-performing materials," said Paula T. Hammond, Bayer Professor of Chemical Engineering and leader of the research team. She noted that the new material also has potential for use in other electrochemical systems such as batteries.

The work was reported in a recent issue of Advanced Materials by Hammond, Avni A. Argun and J. Nathan Ashcraft. Argun is a postdoctoral associate in chemical engineering; Ashcraft is a graduate student in the same department.

Like a battery, a fuel cell has three principal parts: two electrodes (a cathode and anode) separated by an electrolyte. Chemical reactions at the electrodes produce an electronic current that can be made to flow through an appliance connected to the battery or fuel cell.

The principal difference between the two" Fuel cells get their energy from an external source of hydrogen fuel, while conventional batteries draw from a finite source in a contained system.

The MIT team focused on direct methanol fuel cells (DMFCs), in which the methanol is directly used as the fuel and reforming of alcohol down to hydrogen is not required. Such a fuel cell is attractive because the only waste products are water and carbon dioxide (the latter produced in small quantities).

Also, because methanol is a liquid, it is easier to store and transport than hydrogen gas, and is safer (it won't explode). Methanol also has a high energy density-a little goes a long way, making it especially interesting for portable devices.

The DMFCs currently on the market, however, have limitations. For example, the material currently used for the electrolyte sandwiched between the electrodes is expensive. Even more important: that material, known as Nafion, is permeable to methanol, allowing some of the fuel to seep across the center of the fuel cell.

Among other disadvantages, this wastes fuel-and lowers the efficiency of the cell-because the fuel isn't available for the reactions that generate electricity.

Using a relatively new technique known as layer-by-layer assembly, the MIT researchers created an alternative to Nafion.

"We were able to tune the structure of [our] film a few nanometers at a time," Hammond said, getting around some of the problems associated with other approaches. The result is a thin film that is two orders of magnitude less permeable to methanol but compares favorably to Nafion in proton conductivity.

To test their creation, the engineers coated a Nafion membrane with the new film and incorporated the whole into a direct methanol fuel cell. The result was an increase in power output of more than 50 percent.

The team is now exploring whether the new film could be used by itself, completely replacing Nafion. To that end, they have been generating thin films that stand alone, with a consistency much like plastic wrap.

This work was supported by the DuPont-MIT Alliance through 2007. It is currently supported by the National Science Foundation.

Related Links
Massachusetts Institute of Technology
Powering The World in the 21st Century at Energy-Daily.com



Memory Foam Mattress Review
Newsletters :: SpaceDaily :: SpaceWar :: TerraDaily :: Energy Daily
XML Feeds :: Space News :: Earth News :: War News :: Solar Energy News


Improved Ion Mobility Is Key To New Hydrogen Storage Compound
Washington DC (SPX) May 19, 2008
A materials scientist at the National Institute of Standards and Technology (NIST) has deciphered the structure of a new class of materials that can store relatively large quantities of hydrogen within its crystal structure for later release.







  • NASA Successfully Completes First Series Of Ares Engine Tests
  • NASA Awards Contract For Ares I Mobile Launcher
  • Russia's Energomash To Double Production Of Rocket Engines
  • Queensland Uni And NASA Sign Hypersonic Propulsion Deal

  • Sweden Launches MASER 11 Sounding Rocket
  • Spaceport Kourou Welcomes Fourth Ariane 5 Launch Campaign For 2008
  • Orbital Awarded Contract for Suborbital Launch Vehicle Research by US DoD
  • Arianespace Takes Delivery Of Its Third Ariane 5 In 2008

  • STS-124 Astronauts Wrap Up Launch Rehearsal
  • Discovery's Payloads Installed
  • Space Shuttle Discovery Arrives At Launch Pad
  • Discovery's Next Move: Rollout to Pad 39A

  • Russian cargo ship docks with the ISS: report
  • MDA Receives Information Solution Contract With Boeing
  • NASA Extends Space Station Contract With ARES
  • Russian Cargo Spacecraft Docks With ISS

  • On The Moon Inhaling Is A Silent Affair
  • NASA: ISS to soon have new water system
  • NASA announces educational TV partnership
  • Russia, Europe ink deal on new manned spacecraft

  • Suits For Shenzhou
  • China Launches New Space Tracking Ship To Serve Shenzhou VII
  • Three Rocketeers For Shenzhou
  • China's space development can pose military threat: Japan

  • Robot conducts Detroit orchestra
  • Canada rejects sale of space firm to US defense firm
  • The Future Of Robotic Warfare Part Two
  • Robot anaesthetist developed in France: doctor

  • Phoenix Probe Due To Touch Down On Martian Surface
  • Phoenix lander set for May 25 touchdown on Mars: NASA
  • Phoenix Ready For Northern Mars Polar Landing
  • Mars Reconnaissance Orbiter Finds Interior Of Mars Is Colder

  • The content herein, unless otherwise known to be public domain, are Copyright Space.TV Corporation. AFP and UPI Wire Stories are copyright Agence France-Presse and United Press International. ESA Portal Reports are copyright European Space Agency. All NASA sourced material is public domain. Additional copyrights may apply in whole or part to other bona fide parties. Advertising does not imply endorsement, agreement or approval of any opinions, statements or information provided by Space.TV Corp on any Web page published or hosted by Space.TV Corp. Privacy Statement