Cai Yongqing, Zhang Gang, Zhang Yong-Wei
Institute of High Performance Computing, A*Star, Singapore 138632.
Sci Rep. 2014 Oct 20;4:6677. doi: 10.1038/srep06677.
Using first-principles calculations, we study the electronic properties of few-layer phosphorene focusing on layer-dependent behavior of band gap, work function band alignment and carrier effective mass. It is found that few-layer phosphorene shows a robust direct band gap character, and its band gap decreases with the number of layers following a power law. The work function decreases rapidly from monolayer (5.16 eV) to trilayer (4.56 eV), and then slowly upon further increasing the layer number. Compared to monolayer phosphorene, there is a drastic decrease of hole effective mass along the ridge (zigzag) direction for bilayer phosphorene, indicating a strong interlayer coupling and screening effect. Our study suggests that 1). Few-layer phosphorene with a layer-dependent band gap and a robust direct band gap character is promising for efficient solar energy harvest. 2). Few-layer phosphorene outperforms monolayer counterpart in terms of a lighter carrier effective mass, a higher carrier density and a weaker scattering due to enhanced screening. 3). The layer-dependent band edges and work functions of few-layer phosphorene allow for modification of Schottky barrier with enhanced carrier injection efficiency. It is expected that few-layer phosphorene will present abundant opportunities for a plethora of new electronic applications.
通过第一性原理计算,我们研究了少层磷烯的电子性质,重点关注其带隙、功函数、能带排列和载流子有效质量随层数的变化行为。研究发现,少层磷烯呈现出稳健的直接带隙特性,其带隙随层数的增加呈幂律下降。功函数从单层(5.16 eV)迅速降至三层(4.56 eV),然后随着层数的进一步增加而缓慢下降。与单层磷烯相比,双层磷烯沿脊(锯齿)方向的空穴有效质量急剧下降,表明存在强的层间耦合和屏蔽效应。我们的研究表明:1)具有随层数变化的带隙和稳健直接带隙特性的少层磷烯在高效太阳能收集方面具有潜力。2)少层磷烯在载流子有效质量更轻、载流子密度更高以及由于增强屏蔽导致的散射较弱方面优于单层磷烯。3)少层磷烯随层数变化的带边和功函数允许通过提高载流子注入效率来修饰肖特基势垒。预计少层磷烯将为众多新型电子应用带来丰富的机会。