会议专题

Fluorite-structured Mg-based Hydrogen Storage Materials:A Challenging Route towards the Future Hydrogen Economy

1.Introduction It has been identified that hydrogen storage is one of the key drivers, enabling the future hydrogen economy. High-energy density materials will play a dominant role in future gas phase and electrochemical devices, such as Fuel Cells and rechargeable NiMH batteries. Significantly higher gravimetric storage capacities are, however, required to accomplish the necessary breakthroughs. It has recently been shown that more than 6.5 wt.% of hydrogen can be electrochemically absorbed and desorbed at high rates at room temperature in fluorite-structured Mg-compounds 1-3. It has been argued that, in contrast to the well-known rutile-structured Mg-alloys these materials have a much more open crystal structure, facilitating fast hydrogen transport4. In this contribution the electrochemical 1-4 and crystallographic5,6 aspects of this new class of hydride-forming materials will be addressed. Apart from the storage capacity, one of the most important characteristics is the absorption/desorption isotherm. Both a thermodynamic and kinetic modelling approach will be presented, allowing to accurate simulate these complex (de)hydrogenation processes7-9.

hydrogen storage fluorite-structured mg compounds electrochemical storage

P.Vermeulen P.Kalisvaart A.Ledovskikh D.Danilov S.X.Tao A.P.J.Jansen R.A.van Santen P.H.L.Notten

Eindhoven University of Technology,5600 MB Eindhoven,The Netherlands Eindhoven University of Technology,5600 MB Eindhoven,The Netherlands;Philips Research Laboratories,5

国际会议

18th International Symposium on Fine Chemistry and Functional Polymers,4th IUPAC International Symposium on Novel Materials and Their Synthesis(第18届国际精细化学和功能高分子学术讨论会暨第四届IUPAC 国际新型材料及其制备学术讨论会)

江苏镇江

英文

277-279

2008-10-15(万方平台首次上网日期,不代表论文的发表时间)