论文标题
Niobium掺杂诱导的镜子双界在MBE种植的WSE2单层中
Niobium doping induced mirror twin boundaries in MBE grown WSe2 monolayers
论文作者
论文摘要
镜子双边界(MTB)将独特的1D物理和特性带入二维过渡金属二进制基因生殖下(TMDC),但在非基于MO的TMDC中很少观察到它们。在此,通过增长后NB掺杂,将高密度4 | 4e-W和4 | 4p-SE MTB引入分子束外延(MBE)生长的WSE2单层。其中,第一次在实验中发现了具有新结构的4 | 4e-w MTB,而4 | 4p-se mtbs呈现W和NB的随机排列,形成了1D合金系统。掺杂和非掺杂的WSE2之间的比较证实,NB掺杂剂对于MTB形成至关重要。此外,定量统计数据表明,MTB的面积密度与NB掺杂剂的浓度成正比。为了阐明NB掺杂剂的注入途径,进行了有关具有不同构型的多余NB原子的一组形成能的第一原理计算,该模型基于该模型解释了由过量金属引入的MTB的起源的模型。我们得出的结论是,MTB的形成主要是由引入宿主WSE2晶体晶格的多余NB原子的集体演变驱动的以及随后的金属原子(W或NB)的位移。这项研究提供了一种新颖的方法,可以通过适当的金属掺杂来定制2D TMDC材料中的MTB,并为探索有趣的特性提供了新的机会。
Mirror twin boundary (MTB) brings unique 1D physics and properties into two-dimensional transition metal dichalcogenides (TMDCs), but they were rarely observed in non-Mo-based TMDCs. Herein, by post-growth Nb doping, high density 4|4E-W and 4|4P-Se MTBs were introduced into molecular beam epitaxy (MBE) grown WSe2 monolayers. Of them, 4|4E-W MTB with a novel structure was discovered experimentally for the first time, while 4|4P-Se MTBs present a random permutations of W and Nb, forming a 1D alloy system. Comparison between the doped and non-doped WSe2 confirmed that Nb dopants are essential for MTB formation. Furthermore, quantitative statistics reveal the areal density of MTBs is directly proportional to the concentration of Nb dopants. To unravel the injection pathway of Nb dopants, first-principles calculations about a set of formation energies for excess Nb atoms with different configurations were conducted, based on which a model explaining the origin of MTBs introduced by excess metal was built. We conclude that the formation of MTBs is mainly driven by the collective evolution of excess Nb atoms introduced into the lattice of host WSe2 crystal and subsequent displacement of metal atoms (W or Nb). This study provides a novel way to tailor the MTBs in 2D TMDC materials via proper metal doping and presents a new opportunities for exploring the intriguing properties.