Hydrogen-related defects and the role of metal additives in the kinetics of complex hydrides: A first-principles study
نویسندگان
چکیده
We report first-principles studies of hydrogen-related point defects and impurities in LiBH4 and Li4BN3H10, two promising materials for hydrogen storage. In both systems, hydrogen vacancies and interstitials are found to be positively or negatively charged, and hence their formation energies are Fermi-level dependent. One can therefore tailor the formation energies of these point defects hence the kinetics of the systems by shifting the Fermi level. This can be accomplished by adding appropriate impurities that are electrically active into the systems. We have identified a number of transition-metal impurities that are effective in shifting the Fermi level of LiBH4 and Li4BN3H10. A comparison of our calculations with experimental results for the effects of addition of impurities on the kinetics of LiBH4 and Li4BN3H10 shows qualitative agreement, providing validation for our interpretation of the results and for our proposed model for enhancement of kinetics.
منابع مشابه
DOE Hydrogen and Fuel Cells Program FY 2012 Annual Progress Report
Our studies comprise two classes of materials: metal hydrides and complex hydrides. Metal hydrides can store large amounts of hydrogen, but due to the high atomic mass of the host element(s) the weight-percent efficiency is typically low. We are focusing on materials in which the atomic mass of the metal is low, such as MgH2 and AlH3. Comprehensive studies of point defects and migration enable ...
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