论文标题
双反向素蛋白酶的拓扑和热电特性
Topological and Thermoelectric Properties of Double Antiperovskite Pnictides
论文作者
论文摘要
已经发现,已经发现钙钛矿细胞(双钙钛矿)为工程功能材料,尤其是磁性材料打开了新的可能性。此路线应适用于Antiperovskite(APV)类。在此引入的磁性的基于Pnictide的双APV(2APV)类中,磁性非常罕见,我们将其作为新的拓扑材料称呼,可能引起热电学兴趣。我们发现,2APV超级电池提供了一个系统更大的带隙,可以抑制散装电导率,还提供了大型的自旋轨耦合(SOC)用于频段反转。我们介绍了一项针对X $ _6 $ _6 $ aa $'$ b $ _2 $配置的重点研究的广泛研究,其中X是碱性地球元素,A和B是5A组Pnictogens。我们发现,在最小值频带处的“扩展S”状态被描述为阳离价状态或调制的间质Planewave状态,在拓扑和热电特性中都起着至关重要的作用。这些化合物中的几种可能容纳拓扑阶段,而运输计算表明它们也可能发现自己在热电应用中有用。
Doubling the perovskite cell (double perovskite) has been found to open new possibilities for engineering functional materials, magnetic materials in particular. This route should be applicable to the antiperovskite (aPV) class. In the pnictide based double aPV (2aPV) class introduced here magnetism is very rare, and we address them as new topological materials, possibly with thermoelectric interest. We have found that the 2aPV supercell provides a systematically larger band gap that can serve to inhibit bulk conductivity, and also large spin-orbit coupling (SOC) for band inversion. We present examples from a broad study of double antiperovskites focusing on the X$_6$AA$'$B$_2$ configuration, where X is the alkaline earth element and A and B are the group 5A pnictogens. We find that an "extended s" state at the valence band minimum, described alternatively as a cation valence state or a modulated interstitial planewave state, plays a crucial role in both topological and thermoelectric properties. Several of these compounds may house topological phases, while transport calculations indicate they may also find themselves useful in thermoelectric applications.