首页> 外文期刊>Npj Computational Materials >Perfect short-range ordered alloy with line-compound-like properties in the ZnSnN 2 ZnO system
【24h】

Perfect short-range ordered alloy with line-compound-like properties in the ZnSnN 2 ZnO system

机译:完美的短距离有序合金,具有ZnSNN 2 ZnO系统中的线复合特性

获取原文
           

摘要

We present a new solid-state material phase which is a disordered solid solution but offers many ordered line-compound features. The emergent physical phenomena are rooted in the perfect short-range order which conserves the local octet rule. We model the dual-sublattice-mixed semiconductor alloy $${mathrm{(ZnSnN}}_{mathrm{2}}{mathrm{)}}_{1 - x}{mathrm{(ZnO)}}_{2x}$$ using first-principles calculations, Monte-Carlo simulations with a model Hamiltonian, and an extension of the regular solution model by incorporating short-range order. We demonstrate that this unique solid solution, occurring at a "magic" composition, can provide an electronically pristine character without disorder-induced charge localization and, therefore, a superior carrier transport similar to ordered phases. Interestingly, this phase shows singularities that are absent in the conventional solid-solution models, such as the regular solution and band-gap bowing model. Thermodynamically, this alloy phase has a sharply reduced enthalpy at its composition (like a line compound), but it still requires the entropy from long-range disorder to be stabilized at experimentally accessible temperatures.
机译:我们提出了一种新的固态材料相,这是一种无序的固体溶液,但提供了许多有序的线复合特征。紧急物理现象植根于完美的短程顺序,从而节省了本地八位字节规则。我们模拟了双子分离混合半导体合金$$ { mathrm {(znsnn}} { mathrm {2}}} _ {1-x}} _ {1 - x}} _ {1 - x}} _ { _ {2x} $$使用初始原理计算,Monte-Carlo模拟与Model Hamiltonian,并通过合并短距离顺序来扩展常规解决方案模型。我们证明,这种独特的固体解决方案在“魔法”组合物中发生,可以提供无紊乱诱导的电荷定位的电子原始特征,因此,类似于有序相的优越的载流子。有趣的是,该阶段显示了传统的固溶模型中不存在的奇点,例如常规解决方案和带间隙弯曲模型。热力学上,这种合金相的焓在其组合物中具有急剧降低的焓(如线化合物),但它仍然需要在实验可接近的温度下稳定远程障碍的熵。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号