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Intrinsic defects and conduction characteristics of SC_2O_3 in thermionic cathode systems

机译:热电子阴极系统中SC_2O_3的固有缺陷和导电特性

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摘要

Recent experimental observations indicate that bulk SC_2O_3 (~200 run thick), an insulator at room temperature and pressure, must act as a good electronic conductor during thermionic cathode operation, leading to the observed high emitted current densities and overall superior emission properties over conventional thermionic emitters which do not contain SC_2O_3. Here, we employ ab initio methods using both semilocal and hybrid functionals to calculate the intrinsic defect energetics of Sc and O vacancies and interstitials and their effects on the electronic properties of SC_2O_3 in an effort to explain the good conduction of SC_2O_3 observed in experiment. The defect energetics were used in an equilibrium defect model to calculate the concentrations of defects and their compensating electron and hole concentrations at equilibrium. Overall, our results indicate that the conductivity of SC_2O_3 solely due to the presence of intrinsic defects in the cathode operating environment is unlikely to be high enough to maintain the magnitude of emitted current densities obtained from experiment, and that the presence of impurities is necessary to raise the conductivity of SC_2O_3 to a high enough value to explain the current densities observed in experiment. The necessary minimum impurity concentration to impart sufficient electronic conduction is very small (approximately 7.5 × 10~(-3) ppm) and is probably present in all experiments.
机译:最近的实验观察表明,在室温和压力下为绝缘体的块体SC_2O_3(约200纳米厚)必须在热电子阴极工作期间充当良好的电子导体,从而导致观察到的发射电流密度高,并且发射性能总体上优于传统热电子不包含SC_2O_3的发射器。在这里,我们使用从头算的方法使用半局部函数和混合函数来计算Sc和O空位和间隙的固有缺陷能,以及它们对SC_2O_3的电子性能的影响,以解释实验中观察到的SC_2O_3的良好导电性。在平衡缺陷模型中使用缺陷能量学来计算缺陷浓度及其在平衡状态下的补偿电子和空穴浓度。总体而言,我们的结果表明,仅由于阴极工作环境中存在固有缺陷而导致的SC_2O_3的电导率不可能足够高以维持从实验中获得的发射电流密度的大小,并且杂质的存在对于将SC_2O_3的电导率提高到足够高的值,以解释实验中观察到的电流密度。提供足够的电子传导所需的最小杂质浓度非常小(大约7.5×10〜(-3)ppm),并且可能存在于所有实验中。

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  • 来源
    《Physical review》 |2012年第5期|p.054106.1-054106.10|共10页
  • 作者单位

    Interdisciplinary Materials Science Program, University of Wisconsin-Madison, 1509 University Avenue, Madison, Wisconsin 53706, USA;

    Interdisciplinary Materials Science Program, University of Wisconsin-Madison, 1509 University Avenue, Madison, Wisconsin 53706, USA,Department of Electrical and Computer Engineering, University of Wisconsin-Madison, 1415 Engineering Drive, Madison, Wisconsin 53706, USA;

    Interdisciplinary Materials Science Program, University of Wisconsin-Madison, 1509 University Avenue, Madison, Wisconsin 53706, USA,Department of Materials Science and Engineering, University of Wisconsin-Madison, 1509 University Avenue, Madison, Wisconsin 53706, USA;

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  • 正文语种 eng
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  • 关键词

    density functional theory, local density approximation, gradient and other corrections; thermionic emission;

    机译:密度泛函理论;局部密度近似;梯度和其他校正;热电子发射;

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