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拓展配体为分子金属硫属化物的胶体纳米晶的化学多功能性。

Expanding the chemical versatility of colloidal nanocrystals capped with molecular metal chalcogenide ligands.

机构信息

Department of Chemistry, University of Chicago, Illinois 60637, USA.

出版信息

J Am Chem Soc. 2010 Jul 28;132(29):10085-92. doi: 10.1021/ja1024832.

Abstract

We developed different strategies toward the synthesis of colloidal nanocrystals stabilized with molecular metal chalcogenide complexes (MCCs). Negatively charged MCCs, such as SnS(4)(4-), Sn(2)S(6)(4-), SnTe(4)(4-), AsS(3)(3-), MoS(4)(2-), can quantitatively replace the organic ligands at the nanocrystal surface and stabilize nanocrystal solutions in different polar media. We showed that all-inorganic nanocrystals composed of metals, semiconductors, or magnetic materials and capped with various MCC ligands can be synthesized using convenient and inexpensive chemicals and environmentally benign solvents such as water, formamide, or dimethylsulfoxide. The development of mild synthetic routes was found to be crucial for the design of highly luminescent all-inorganic nanocrystals, such as CdSe/ZnS and PbS capped with Sn(2)S(6)(4-) MCCs, respectively. We also prepared conductive and luminescent layer-by-layer assemblies from inorganically capped colloidal nanocrystals and polyelectrolytes. In close-packed films of 5-nm Au nanocrystals stabilized with Na(2)Sn(2)S(6) we observed very high electrical conductivities (>1000 S cm(-1)).

摘要

我们开发了不同的策略来合成胶体纳米晶体,这些纳米晶体由分子金属硫属化物配合物(MCCs)稳定。带负电荷的 MCCs,如 SnS(4)(4-)、Sn(2)S(6)(4-)、SnTe(4)(4-)、AsS(3)(3-)、MoS(4)(2-),可以定量取代纳米晶体表面的有机配体,并在不同极性介质中稳定纳米晶体溶液。我们表明,可以使用方便且廉价的化学物质和环境友好的溶剂(如水、甲酰胺或二甲基亚砜),合成由金属、半导体或磁性材料组成且带有各种 MCC 配体的全无机纳米晶体。我们发现,温和的合成途径的发展对于设计高发光的全无机纳米晶体至关重要,例如分别用 Sn(2)S(6)(4-)MCC 封端的 CdSe/ZnS 和 PbS 纳米晶体。我们还制备了由无机封端的胶体纳米晶体和聚电解质组成的导电和发光的层层组装体。在由 Na(2)Sn(2)S(6)稳定的 5nm Au 纳米晶体的紧密堆积薄膜中,我们观察到非常高的电导率(>1000 S cm(-1))。

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