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Aluminium clusters for molecular hydrogen storage and the corresponding alanes as fuel alternatives: A structural and energetic analysis

机译:用于分子氢存储的铝簇和相应的丙氨酸作为燃料的替代品:结构和能量分析

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Bare and hydrogenated aluminium clusters Al_n (n = 5-7) are studied using density functional theory in order to evaluate the ability to store molecular hydrogen and to estimate the energy release upon combustion with the aim to understand these species as alternative fuel resources. Six sequential molecular hydrogenations are considered and are shown to occur without or very low activation barriers. The H_2 molecule uses its occupied a orbital to react with an appropriate electron-deficient site of the cluster; this is generally followed by H migration leading to the favoured geometry. The combustion process produces alumina (A1_2O_3), water and a significant quantity of energy. The exothermicity seems to be largely independent of cluster size but it depends instead on the stored hydrogen quantity.
机译:利用密度泛函理论研究了裸铝和氢化铝簇Al_n(n = 5-7),以便评估分子氢的存储能力并估算燃烧时的能量释放,以期将这些物种理解为替代燃料资源。考虑了六个连续的分子氢化,并显示它们没有或非常低的活化势垒发生。 H_2分子利用其占据的轨道与簇中适当的电子不足位点发生反应。通常,随后是H迁移,从而导致偏爱的几何形状。燃烧过程产生氧化铝(Al_2O_3),水和大量能量。放热似乎在很大程度上与簇的大小无关,但它取决于所储存的氢量。

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