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A Facile and Universal Top-Down Method for Preparation of Monodisperse Transition-Metal Dichalcogenide Nanodots

机译:一种简便,通用的自顶向下制备单分散过渡金属硫族硫化物纳米点的方法

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摘要

Despite unique properties of layered transitionmetal dichalcogenide (TMD) nanosheets, there is still lack of a facile and general strategy for the preparation of TMD nanodots (NDs). Reported herein is the preparation of a series of TMD NDs, including TMD quantum dots (e. g. MoS2, WS2, ReS2, TaS2, MoSe2 and WSe2) and NbSe2 NDs, from their bulk crystals by using a combination of grinding and sonication techniques. These NDs could be easily separated from the N-methyl- 2-pyrrolidone when post-treated with n-hexane and then chloroform. All the TMD NDs with sizes of less than 10 nm show a narrow size distribution with high dispersity in solution. As a proof-of-concept application, memory devices using TMD NDs, for example, MoSe2, WS2, or NbSe2, mixed with polyvinylpyrrolidone as active layers, have been fabricated, which exhibit a nonvolatile write-once-read-many behavior. These high-quality TMD NDs should have various applications in optoelectronics, solar cells, catalysis, and biomedicine.
机译:尽管层状过渡金属二硫化碳(TMD)纳米片具有独特的性能,但仍缺乏制备TMD纳米点(NDs)的简便通用方法。本文报道的是通过使用研磨和超声技术的组合,从它们的体晶体中制备一系列TMD ND,包括TMD量子点(例如MoS2,WS2,ReS2,TaS2,MoSe2和WSe2)和NbSe2 ND。当先用正己烷,然后用氯仿进行后处理时,这些ND可以很容易地从N-甲基-2-吡咯烷酮中分离出来。所有尺寸小于10 nm的TMD ND都显示出窄的尺寸分布,并在溶液中具有较高的分散性。作为概念验证的应用,已经制造了使用TMD ND(例如MoSe2,WS2或NbSe2)与聚乙烯吡咯烷酮混合作为有源层的存储设备,这些存储设备表现出非易失性的一次写入多次读取行为。这些高质量的TMD ND应在光电,太阳能电池,催化和生物医学中具有各种应用。

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