首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Improved dispersant-free liquid exfoliation down to the graphene-like state of solvent-free mechanochemically delaminated bulk MoS2
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Improved dispersant-free liquid exfoliation down to the graphene-like state of solvent-free mechanochemically delaminated bulk MoS2

机译:改进的无分散剂液体剥落,直至无溶剂机械化学分层的本体MoS2的石墨烯状

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摘要

Molybdenum disulfide (MoS2) was recently found to exhibit an indirect-to-direct gap transition when its thickness is reduced to a single S-Mo-S trilayer sheet, which opens up opportunities for a range of novel optoelectronic applications. Here we first report the possibility of dispersant-free efficient liquid exfoliation down to the graphene-like state of solvent-free mechanochemically delaminated bulk MoS2. The graphene-like, single-sheet structure of MoS2 nanoparticles in the dispersions is confirmed by mutually complementary experimental methods. The proposed approach essentially improves the known liquid exfoliation method based on the ultrasound disintegration of bulk MoS2, because the proposed mechanochemical treatment of the initial bulk MoS2 could provide 100% yield of the single-sheet nanoparticles without the use of dispersants.
机译:最近发现,当二硫化钼(MoS2)的厚度减小到单层S-Mo-S三层薄板时,会表现出间接到直接的间隙跃迁,这为一系列新型光电应用打开了机会。在这里,我们首先报道了无分散剂的高效液体剥离的可能性,直至无溶剂的机械化学分层的MoS2的石墨烯状状态。通过相互补充的实验方法证实了分散体中MoS2纳米颗粒的石墨烯状单片结构。提议的方法从本质上改进了基于超声分解块状MoS2的已知液体剥离方法,因为建议的对初始块状MoS2的机械化学处理可以在不使用分散剂的情况下提供100%的单片纳米颗粒收率。

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