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'Chemical Weathering' Exfoliation of Atom-Thick Transition Metal Dichalcogenides and Their Ultrafast Saturable Absorption Properties

机译:原子厚的过渡金属二硫属元素化物的“化学风化”剥落及其超快饱和吸收特性

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2D transition metal dichalcogenides are attracting increased attention because of their excellent electronic and optical properties. Inspired by the natural weathering exfoliation of seaside rocks, a chemical weathering concept for fabricating atom-thick 2D materials from their bulk counterparts is proposed. It is experimentally demonstrated that chemical weathering-assisted exfoliation mechanism is a simple and efficient method of preparing atom-thick MoS2 and WS2 monolayers. These monolayers are difficult to prepare using other approaches. Interestingly, the as-prepared MoS2 and WS2 monolayers exhibit excellent saturable absorption and mode-locking properties in all-solid-state lasers because of intermediate states resulting from S-vacancy defects. The obtained passively Q-switched laser operation with 60 ns pulse width and ultrafast mode locking with 8.6 ps pulse width are promising for all-solid-state laser application.
机译:2D过渡金属二卤化金属因其出色的电子和光学性能而受到越来越多的关注。受到海边岩石自然风化剥落的启发,提出了一种化学风化概念,用于从其体积较大的同类材料中制造原子级的二维材料。实验证明,化学风化辅助剥离机制是制备原子厚的MoS2和WS2单分子膜的一种简单有效的方法。使用其他方法很难制备这些单层膜。有趣的是,由于S空位缺陷导致的中间态,如此制备的MoS2和WS2单层在全固态激光器中表现出出色的饱和吸收和锁模性能。所获得的60 ns脉冲宽度的被动Q开关激光器操作和8.6 ps脉冲宽度的超快锁模技术有望用于全固态激光器应用。

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