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Effect of metal atom substitutions in Li based hydrides for hydrogen storage

机译:金属原子取代在氢贮藏中的氢气储存的影响

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摘要

By using density functional theory and the full-potential linearised augmented plane wave method, the effect of alkali (AM) and transition metal (TM) atom substitutions in Li based hydrides (Li7XH8 X (AM) = Na, K, Rb and X (TM) = Ti, V, Cr) was investigated, by studying their formation energies and electron properties, aiming at improving hydrogen storage performance. The calculated formation energy values indicate that there is a gradual degradation in stability due to alkali substitutions from Na to Rb and to transition metal substitutions from Ti to Cr in Li7XH8. The found degradations of stability in Li7XH8 were better compared concomitantly with corresponding gravimetric hydrogen storage variations. The less stable phase with least variation in gravimetric hydrogen storage was found to be Li7CrH8 among all alkali and transition metal atom substitutions. The density of states and the electron density support our observations. (C) 2020 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:通过使用密度函数理论和全电位线性增大平面波方法,碱(AM)和过渡金属(TM)原子取代在Li基水合中的影响(Li7xH8 x(AM)= Na,K,Rb和X(通过研究其形成能量和电子性质,研究了TM)= Ti,V,Cr),旨在改善储氢性能。计算的形成能量值表明,由于Na至Rb的碱取代,并且在Li7xH8中的Ti至Cr过渡金属取代,稳定性稳定性逐渐降解。伴随着相应的重量储氢变化,较好地比较Li7xH8中稳定性的发现降解。在所有碱和过渡金属原子取代中发现重量储氢的最小变化的稳定相位较小的相位是Li7CrH8。状态的密度和电子密度支持我们的观察。 (c)2020氢能源出版物LLC。 elsevier有限公司出版。保留所有权利。

著录项

  • 来源
    《International journal of hydrogen energy 》 |2020年第53期| 28920-28929| 共10页
  • 作者单位

    Univ Ouargla Fac Sci Appl Dept Genie Proc Ouargla 30000 Algeria|Univ Ouargla Fac Math & Sci Matiere Lab Dev Energies Nouvelles & Renouvelables Zones Ouargla 30000 Algeria;

    Univ Ouargla Fac Math & Sci Matiere Lab Dev Energies Nouvelles & Renouvelables Zones Ouargla 30000 Algeria;

    Univ Ouargla Fac Math & Sci Matiere Lab Dev Energies Nouvelles & Renouvelables Zones Ouargla 30000 Algeria;

    Univ Ouargla Fac Math & Sci Matiere Lab Dev Energies Nouvelles & Renouvelables Zones Ouargla 30000 Algeria;

    Univ Ouargla Fac Math & Sci Matiere Lab Dev Energies Nouvelles & Renouvelables Zones Ouargla 30000 Algeria;

    Univ Ouargla Fac Math & Sci Matiere Lab Dev Energies Nouvelles & Renouvelables Zones Ouargla 30000 Algeria;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Formation energy; Hydrogen storage; Density functional theory; Full potential; Gravimetric hydrogen storage; DOS analysis;

    机译:形成能量;氢气储存;密度函数理论;全潜力;重量储氢;DOS分析;

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