Improved Ion Mobility Is Key to New Hydrogen Storage Compound

May 14th, 2008 Improved Ion Mobility Is Key to New Hydrogen Storage Compound

The atomic structure of the mix of lithium amide with lightweight metal hydrides shows layers of calcium that the lithium ions can sprint through. This facilitates hydrogen storage and release. Credit: NIST

A materials scientist at the National Institute of Standards and Technology 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. The new analysis may point to a practical hydrogen storage material for automobile fuel cells and similar applications.

The abundant element hydrogen could play a role in replacing carbon-based fuels for transportation in the future, but researchers first must develop a method to store and release large amounts of the highly flammable, odorless invisible gas economically and safely. There are materials that are known to trap relatively large quantities of hydrogen, at normal pressures, but to date they all require heating to fairly high temperatures to release the hydrogen.

Hui Wu, a research associate from the University of Maryland working in a cooperative research program at the NIST Center for Neutron Research, has been investigating a new hydrogen storage compound that mixes lithium amide with lightweight metal hydrides.

Lithium amide can hold more than 10 percent of hydrogen by weight, well above the 6 percent target set by the U.S. Department of Energy as a 2010 goal for a hydrogen storage material for transportation. The material absorbs and releases hydrogen reversibly, but both absorbing and releasing the hydrogen requires high temperatures and also produces a toxic byproduct, ammonia.

Metal hydrides also store hydrogen, though not as well, but recently it’s been shown that a combination of the two not only can store significant quantifies of hydrogen but also can release it at lower temperatures than the lithium amide alone (about 100 degrees Celsius) while generating much less ammonia.

To understand how the compound achieves this, Wu used neutron analysis to work out the atomic structure of the material, which she found consists of layers of calcium between which lithium ions travel rapidly. The easy travel allows the material to transfer the hydrogen at lower temperatures. Also the hydrogen ions in the amide and hydride mixture combine easily and release hydrogen at lower temperature without creating much ammonia.

“I found that the mobility of small ions in the mixed amide-hydride system greatly improves hydrogen storage properties,” Wu explains. “This finding helps us understand how hydrogen travels in and out of these systems and that may lead to a rational development of better materials for hydrogen storage.”

Citation: H. Wu. Structure of ternary imide Li2Ca(NH)2 and hydrogen storage mechanisms in amide-hydride system. Journal of the American Chemical Society ASAP Article, Web release date: April 30, 2008

Source: NIST


print this article email this article download pdf blog this article bookmark this article     Digg this Stumble it share on Facebook share on Reddit add to delicious save to Yahoo! bookmarks
4.8/5 after 8 votes


May 14th, 2008 all stories
Chemistry /

Comments: 0
Rank: 4.8/5 after 8 votes

  • Stumble this up

  • Digg this

  • Share it:
  • share on Facebook
  • share on MySpace
  • share on Slashdot
  • rss-newsfeed
  • share on Google
  • share on Reddit
  • add to delicious
  • save to Yahoo! bookmarks
  • share on Windows Live
  • Add to Mixx!
Rating: 4.8/5 after 8 votes

  • Related Stories

  • Researchers demonstrate reversible generation of a high capacity hydrogen storage material
    created 10 minutes ago | popularity not rated yet | comments 0
  • Accolade for solar-hydrogen project
    created May 18, 2009 | popularity not rated yet | comments 0
  • Scientists work to plug microorganisms into the energy grid
    created May 18, 2009 | popularity not rated yet | comments 0
  • Researchers create catalysts for use in hydrogen storage materials
    created Mar 24, 2009 | popularity not rated yet | comments 0
  • Water acts as catalyst in explosives
    created Mar 20, 2009 | popularity not rated yet | comments 0

Tags


  • Physicists Demonstrate Quantum Memory with Matter Qubits
    Physicists Demonstrate Quantum Memory with Matter Qubits
    Physics / General Physics
    created Jul 03, 2009 | popularity 4.4 / 5 (17) | comments 1
  • 'Holey' Nanosheets for Wastewater Dye Removal
    Nanotechnology / Nanomaterials
    created Jul 01, 2009 | popularity 5 / 5 (5) | comments 1
  • Jellyfish Robot Swims Like its Biological Counterpart
    Jellyfish Robot Swims Like its Biological Counterpart
    Electronics / Robotics
    created Jun 26, 2009 | popularity 4.4 / 5 (8) | comments 1
  • Could Maxwell's Demon Exist in Nanoscale Systems?
    Could Maxwell's Demon Exist in Nanoscale Systems?
    Physics / General Physics
    created Jun 24, 2009 | popularity 4.4 / 5 (18) | comments 29
  • Living Safely with Robots, Beyond Asimov's Laws
    Living Safely with Robots, Beyond Asimov's Laws
    Electronics / Robotics
    created Jun 22, 2009 | popularity 4.6 / 5 (53) | comments 40
  • Other News

    Researchers demonstrate reversible generation of a high capacity hydrogen storage material

    Chemistry / Materials Science

    created 10 minutes ago | popularity not rated yet | comments 0

    Researchers at the U.S. Department of Energy's Savannah River National Laboratory have created a reversible route to generate aluminum hydride, a high capacity hydrogen storage material. This achievement is not only expected ...


    New method for detecting nitroxyl will boost cardiac drug research

    New method for detecting nitroxyl will boost cardiac drug research

    Chemistry / Biochemistry

    created 4 hours ago | popularity not rated yet | comments 0

    Wake Forest University scientists have developed a new research tool in the pursuit of heart medications based on the compound nitroxyl by identifying unique chemical markers for its presence in biological ...


    Scientists find molecule that regulates heart size by using zebrafish screening model

    Chemistry / Biochemistry

    created 21 hours ago | popularity not rated yet | comments 0

    Using zebrafish, researchers at the University of Pittsburgh have identified and described an enzyme inhibitor that allows them to increase the number of cardiac progenitor cells and therefore influence the size of the developing ...


    Scientists find a biological 'fountain of youth' in new world bat caves

    Chemistry / Biochemistry

    created Jun 30, 2009 | popularity 3.9 / 5 (28) | comments 31

    Scientists from Texas are batty over a new discovery which could lead to the single most important medical breakthrough in human history -- significantly longer lifespans. The discovery, featured on the cover of the July ...


    urine

    Producing hydrogen from urine

    Chemistry / Analytical Chemistry

    created Jul 03, 2009 | popularity 4.6 / 5 (38) | comments 18

    (PhysOrg.com) -- You do two things at motorway services: fill up one tank and empty another. US chemists have combined refuelling your car and relieving yourself by creating a new catalyst that can extract ...