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两步合成发光 MoS(2)-ZnS 杂化量子点。

Two-step synthesis of luminescent MoS(2)-ZnS hybrid quantum dots.

机构信息

School of Electrical and Computer Engineering, RMIT University, Melbourne, Victoria 3001, Australia.

出版信息

Nanoscale. 2015 Oct 28;7(40):16763-72. doi: 10.1039/c5nr04790k.

Abstract

A surfactant assisted technique has been used to promote the exfoliation of molybdenum disulphide (MoS2) in a water-ethanol mixture, to avoid the use of harsh organic solvents, whilst still producing sufficient concentration of MoS2 in suspension. The exfoliated flakes are converted into MoS2 quantum dots (QDs), through a hydrothermal procedure. Alternatively, when the flakes are processed with precursors for zinc sulphide (ZnS) synthesis, a simultaneous break-down and composite growth is achieved. The products are separated by centrifugation, into large ZnS spheres (200-300 nm) and small MoS2-ZnS hybrid QD materials (<100 nm), of which, the latter show favorable optical properties. Two concurrent photoluminescent (PL) peaks are seen at 380 and 450 nm, which are assigned to MoS2 and ZnS components of QDs, respectively. The PL emission from MoS2-ZnS QDs is of high energy and is more intense than the bare MoS2 flakes or QDs, with a quantum yield as high as 1.96%. The emission wavelength is independent from the excitation wavelength and does not change over time. Due to such properties, the developed hybrid QDs are potentially suitable for imaging and sensing applications.

摘要

一种表面活性剂辅助技术已被用于促进二硫化钼(MoS2)在水-乙醇混合物中的剥落,以避免使用苛刻的有机溶剂,同时仍能在悬浮液中产生足够浓度的 MoS2。剥落的薄片通过水热程序转化为 MoS2 量子点(QD)。或者,当将薄片与用于合成硫化锌(ZnS)的前体一起处理时,实现了同时的分解和复合生长。通过离心将产物分离成大的 ZnS 球(200-300nm)和小的 MoS2-ZnS 混合 QD 材料(<100nm),其中后者表现出良好的光学性质。在 380nm 和 450nm 处观察到两个并发的光致发光(PL)峰,分别归因于 QD 的 MoS2 和 ZnS 组分。MoS2-ZnS QD 的 PL 发射具有高能且比裸露的 MoS2 薄片或 QD 更强,量子产率高达 1.96%。发射波长与激发波长无关,且随时间不变。由于这些性质,开发的混合 QD 可能适用于成像和传感应用。

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