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Effect of Ti and metal vacancies on the electronic structure, stability, and dehydrogenation of Na3AlH6: Supercell band-structure formalism and gradient-corrected density-functional theory

机译:钛和金属空位对Na3AlH6的电子结构,稳定性和脱氢的影响:超级电池带结构形式学和梯度校正的密度泛函理论

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摘要

Electronic and structural properties of sodium-aluminum hexahydride (Na3AlH6) formed during the decomposition reaction of sodium alanate (NaAlH4) and the effects of Ti catalyst are studied using supercell approach and density-functional theory. The preferred site of Ti has been determined by substituting it at both the Na and Al sites and comparing the respective formation energies. The least unfavorable site for Ti is found to be the Al site. To examine the role of Ti substitution on the desorption of hydrogen, the energy cost to remove a H atom from the vicinity of Ti was calculated and compared with that from the pure Na3AlH6 The improvement in dehydrogenation of Na3AlH6 was found to be due to the weakening the Al-H bond caused by Ti substitution. We also studied the role of metal vacancies on hydrogen desorption. Although this desorption was exothermic, the energies to create these vacancies are high.
机译:利用超晶胞方法和密度泛函理论研究了铝酸钠(NaAlH4)分解反应中形成的六氢化钠铝(Na3AlH6)的电子和结构性质以及钛催化剂的影响。 Ti的优选位点已通过将其替换为Na和Al位点并比较各自的形成能来确定。发现Ti最不利的部位是Al部位。为了检查Ti取代对氢解吸的作用,计算了从Ti附近除去H原子的能量成本,并将其与纯Na3AlH6的能量成本进行了比较。发现Na3AlH6脱氢的改善是由于弱化Ti取代引起的Al-H键。我们还研究了金属空位对氢解吸的作用。尽管这种解吸是放热的,但产生这些空位的能量很高。

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    Li S.; Jena Puru;

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  • 年度 2006
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