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Cryo-mediated exfoliation and fracturing of layered materials into 2D quantum dots

机译:低温介导的剥落和分层材料破裂成2D量子点

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摘要

Atomically thin quantum dots from layered materials promise new science and applications, but their scalable synthesis and separation have been challenging. We demonstrate a universal approach for the preparation of quantum dots from a series of materials, such as graphite, MoS2, WS2, h-BN, TiS2, NbS2, Bi2Se3, MoTe2, Sb2Te3, etc., using a cryo-mediated liquid-phase exfoliation and fracturing process. The method relies on liquid nitrogen pretreatment of bulk layered materials before exfoliation and breakdown into atomically thin two-dimensional quantum dots of few-nanometer lateral dimensions, exhibiting size-confined optical properties. This process is efficient for a variety of common solvents with a wide range of surface tension parameters and eliminates the use of surfactants, resulting in pristine quantum dots without surfactant covering or chemical modification.
机译:层状材料的原子薄量子点有望带来新的科学和应用,但其可扩展的合成和分离一直具有挑战性。我们展示了一种使用低温介导的液相从一系列材料制备量子点的通用方法,这些材料例如石墨,MoS2,WS2,h-BN,TiS2,NbS2,Bi2Se3,MoTe2,Sb2Te3等。剥落和压裂过程。该方法依赖于块状层状材料的液氮预处理,然后剥落并分解成横向尺寸为几纳米的原子薄的二维量子点,表现出受尺寸限制的光学特性。该方法对于具有多种表面张力参数的多种常见溶剂都是有效的,并且无需使用表面活性剂,从而可以得到没有表面活性剂覆盖或化学修饰的原始量子点。

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