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Effects of Mg and Al doping on the electronic structure and dehydrogenation of LiBH4·NH3
Authors:Peisi Zhang  Baoen Xu  Xiaoyan Li  Yanli Zeng  Lingpeng Meng
Affiliation:1. College of Chemistry and Material Science, Hebei Normal University, Road East of 2nd Ring South, Shijiazhuang, 050024, China;2. College of Chemical Engineering, Shijiazhuang University, Shijiazhuang, 050035, China
Abstract:The electronic structures and bonding characters, the occupation energies of dopants, as well as the formation energies of Frenkel defects in pure LiBH4·NH3 and in Mg- and Al-substituted LiBH4·NH3 were investigated by using first-principles calculations. The occupation energies show that the substitutions with Mg and Al destabilize LiBH4·NH3 and that Mg substitution is easier than Al substitution. Substitution with Mg or Al partly reduced interactions between B–H and N–H atoms, thus improving the dehydrogenation property of LiBH4·NH3. At the same time, substitution with Mg or Al increases the interactions between metal and N atoms, which stabilize the NH3 group and inhibit the release of NH3 during dehydrogenation. The formation energy of Frenkel defects indicates that Mg or Al doping facilitates the formation of Frenkel defects. Our theoretical studies show that Mg and Al are good candidates but Al is better than Mg for improving the dehydrogenation property of LiBH4·NH3.
Keywords:Amminelithium borohydride  Dehydrogenation  Substitution  Frenkel defect  Vacancy  Interval
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