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Self-passivated ultra-thin SnS layers via mechanical exfoliation and post-oxidation

机译:通过Self-passivated超薄SnS层机械剥离和post-oxidation

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Remarkable optical/electrical features are expected in two-dimensional group-IV monochalcogenides (MXs; M = Sn/Ge and X = S/Se) with a uniquely distorted layered structure. The lone pair electrons in the group-IV atoms are the origin of this structural distortion, while they also cause a strong interlayer force and high chemical reactivity. The fabrication of chemically stable few-to-monolayer MX has been a significant challenge. We have observed that, once the SnS surface is oxidized, the SnOx top layer works as a passivation layer for the SnS layer underneath. In this work, the SnOx/SnS hetero-structure is studied structurally, optically, and electrically. When tape-exfoliated bulk SnS is oxygen-annealed under a reduced pressure at 10 Pa, surface oxidation and SnS sublimation proceed simultaneously, resulting in a monolayer-thick SnS layer with the SnOx passivation layer. The field-effect transistor of nine-layer SnS prepared via mechanical exfoliation exhibits a p-type characteristic because of intrinsic Sn vacancies, whereas ambipolar behavior is observed for the monolayer-thick SnS obtained via oxygen annealing probably owing to the additional n-type doping by S vacancies. This work on monolayer-thick SnS fabrication can be applied to other unstable lone pair analogues and can facilitate future research on MXs.
机译:卓越的光学/电气特性预计在二维group-IVmonochalcogenides (mx;有一个独特的失真的分层结构。group-IV原子的孤对电子这种结构性失真的起源,而他们也导致层间力量雄厚和高化学反应性。化学稳定性few-to-monolayer MX一直是巨大的挑战。一旦SnS表面氧化,SnOx上面SnS层作为钝化层层下面。hetero-structure研究从结构上看,光和电。大部分SnS oxygen-annealed在减少压力10 Pa,表面氧化和社交升华同时进行,导致与SnOx monolayer-thick SnS层钝化层。通过机械nine-layer SnS的准备剥落展览一个p型的特征因为内在Sn的空缺,而双极性的行为是观察到的通过氧退火monolayer-thick SnS获得可能由于额外的n型掺杂职位空缺。制造也适用于其他不稳定的孤独对类似物,有助于未来的研究在MXs。

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