张文雪, 白玉星, 何成. 实现照明LED用p-ZnO中Ag-2N高共掺粒子数分数机理[J]. 北京工业大学学报, 2014, 40(12): 1911-1916.
    引用本文: 张文雪, 白玉星, 何成. 实现照明LED用p-ZnO中Ag-2N高共掺粒子数分数机理[J]. 北京工业大学学报, 2014, 40(12): 1911-1916.
    ZHANG Wen-xue, BAI Yu-xing, HE Cheng. Ag-2N High Concentration Codoping p-Zn O for LED[J]. Journal of Beijing University of Technology, 2014, 40(12): 1911-1916.
    Citation: ZHANG Wen-xue, BAI Yu-xing, HE Cheng. Ag-2N High Concentration Codoping p-Zn O for LED[J]. Journal of Beijing University of Technology, 2014, 40(12): 1911-1916.

    实现照明LED用p-ZnO中Ag-2N高共掺粒子数分数机理

    Ag-2N High Concentration Codoping p-Zn O for LED

    • 摘要: 基于密度泛函理论的第一性原理方法, 对六方纤锌矿结构的Zn O晶体, N、Ag分别掺杂Zn O, 以及Ag-2N共掺杂Zn O晶体的几何结构分别进行了比较研究, 在此基础上计算得到了未掺杂Zn O晶体和不同掺杂情况下Zn O晶体的能带结构、总体态密度、分波态密度和电荷布居数.结果显示:Ag-2N共掺杂Zn O具有较稳定的结构, 能有效提高载流子粒子数分数, 更容易得到稳定的p型Zn O.

       

      Abstract: First-principles density-functional theory calculations are perfomed to investigate the atomic structures and electronic properties of undoped wurtzite Zn O, N, Ag single doped and Ag-2N codoped Zn O, respectively. The results of band structure, total density of state, partial state density and Mulliken charge are obtained and analyzed.Resultssuggest that Ag-2N codoped Zn O is more stable by efficiently enhancing the dopant solubility and thus is likely to yield better p-type conductivity.

       

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