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Defect Energetics In Zno: A Hybrid Hartree-fock Density Functional Study

机译:Zno中的缺陷能量学:混合Hartree-fock密度泛函研究

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摘要

First-principles calculations based on hybrid Hartree-Fock density functionals provide a clear picture of the defect energetics and electronic structure in ZnO. Among the donorlike defects, the oxygen vacancy and hydrogen impurity, which are deep and shallow donors, respectively, are likely to form with a substantial concentration in n-type ZnO. The zinc interstitial and zinc antisite, which are both shallow donors, are energetically much less favorable. A strong preference for the oxygen vacancy and hydrogen impurity over the acceptorlike zinc vacancy is found under oxygen-poor conditions, suggesting that the oxygen vacancy contributes to nonstoichiometry and that hydrogen acts as a donor, both of which are without significant compensation by the zinc vacancy. The present results show consistency with the relevant experimental observations.
机译:基于混合Hartree-Fock密度泛函的第一性原理计算清楚地显示了ZnO中的缺陷能和电子结构。在供体样缺陷中,很可能在n型ZnO中形成大量浓度的氧空位和氢杂质,分别是深供体和浅供体。都是间隙供体的锌间隙性锌和反锌性锌在能量上不利得多。在缺氧条件下,氧空位和氢杂质比受体样锌空位更受偏爱,这表明氧空位有助于非化学计量,并且氢起供体的作用,锌空位都没有明显的补偿作用。目前的结果表明与相关的实验观察结果一致。

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