期刊文献+

过渡金属元素X(X=Ni,Ti,V)掺杂对Mg17Al12合金结构的影响

Effects of Transition Metal X(X=Ni,Ti,V)Doping on Mg_(17)Al_(12) Alloy
下载PDF
导出
摘要 【目的】提高镁铝(Mg-Al)合金材料的储氢性能。【方法】基于密度泛函理论的平面波赝势方法,对过渡金属元素X(X=Ni,Ti,V)掺杂Mg_(17)Al_(12)合金体系的生成焓、电子结构、态密度、电荷密度等进行理论计算研究。【结果】过渡金属元素X替代合金中Mg元素的能量较低,其中Ni的掺杂性能较好;Ni的加入改善了Mg_(17)Al_(12)的储氢性能。且随着Ni浓度的升高,Mg_(17)Al_(12)合金的体积逐渐减小,总态密度峰值依次增大。【结论】过渡金属元素X(X=Ni,Ti,V)的掺杂可使镁铝合金的稳定性得到提升,与实验结果相符。 【Objective】To improve the hydrogen storage property of Mg-Al alloy material.【Methods】Based on the density functional theory method of plane wave potential,the formation enthalpy,electron structure,density of states,and charge density of Mg17Al12 doping with transition metal X(X=Ni,Ti,V)systems were investigated.【Results】The results show that the energy of Mg element in the substitution metal of the transition metal element X is lower,and the doping property of Ni is better.The addition of Ni improves the hydrogen storage performance of Mg17Al12.With the increase of Ni concentration,the volume of Mg17Al12 alloy decreases and the peak value of total density increases in turn.【Conclusion】The doping of transition metal element X(X=Ni,Ti,V)enhances the stability of Mg-Al alloy,which is consistent with the experimental results.
出处 《广西科学》 CAS 2017年第4期356-360,365,共6页 Guangxi Sciences
基金 国家自然科学基金项目(51401055)资助
关键词 密度泛函理论 几何结构 态密度 MG17AL12 density functional theory geometry structure density of states Mg17Al12
  • 相关文献

参考文献1

二级参考文献19

  • 1张国英,张辉,方戈亮,李昱材.Bi,Sb合金化对AZ91镁合金组织、性能影响机理研究[J].物理学报,2005,54(11):5288-5292. 被引量:25
  • 2LUO A, PEKGULERYUZ M O, Cast magnesium alloys for elevated temperature application[J]. J Mater Sci, 1994(20), 29: 5259-5271,
  • 3DU Wen-wen, SUN Yang-shan, MIN Xue-gang, et al. Influence of Ca addition on valence electron structure of Mg17Al12[J]. Chinese Nonferrous Metals, 2003, 13(6): 1247-1280.
  • 4PERDEW J P, BURKE K, ERNZERI-IOF M. Generalized gradient approximation made simple[J]. Phys Rev Lett, 1996, 77(18/28): 3865-3868.
  • 5PACK J D, MONKHORST H J. Special points for Brillouinzone integrations-A reply[J]. Phys Rev B, 1977, 16(4/15): 1748-1749.
  • 6DELLEY B. Analytic energy derivatives in the numerical local-density-functional approach[J]. J Chem Phys, 1991, 94(11): 7245-7250.
  • 7MEDVEDEVA M I, GORNOSTYREV Y N, NOVIKOV D L, et al. Ternary site preference energies, size misfits and solid solution hardening in NiAI and FeAI[J]. Acta Mater, 1998, 46(10): 3433-3442.
  • 8SAHU B R. Electronic structure and bonding of ultralight LiMg[J]. Mater Sci Eng B, 1997, 49(1): 74-78.
  • 9ZHOU D W, PENG P, LIU J S. Energetics, electronic structure and structure stability of the calcium alloying Mg17Al12 phase from first principles calculations[J]. Mater Sci, 2007, 25(1): 145-153.
  • 10SONG Y, GUO Z X, YANG R, et al. First principles study of site substitution of ternary elements in NiAI[J]. Acta Mater, 2001, 49(9): 1647-1654.

共引文献7

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部