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A Synthetic Method for Transition-Metal Chalcogenide Nanocrystals

机译:过渡金属硫属化物纳米晶的合成方法

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In this paper, we prepared a series of chalcogenide semiconductor nanocrystals in controllable shape and size via a facile wet route using metal nitrates and sulfur or selenium powder as precursors and octadecylamine (ODA) as solvent. The as-obtained chalcogenides included CdS, MnS, Ag2S, PbS, Cu1.8S, Bi2S3, ZnS, ZnxCd1-xS, as well as Ag2Se, Cu2-xSe, CdSe. MnSe. Furthermore. these cyclohexane-soluble monodisperse nanocrystals were assembled to water-soluble colloidal spheres and the adjustment of assembly orderliness has been achieved by controlling the experimental parameters. The general synthesis and assembly of chalcogenide semiconductors provide ideal building blocks for various potential applications.
机译:在本文中,我们以金属硝酸盐和硫或硒粉为前体,以十八烷基胺(ODA)为溶剂,通过简便的湿法制备了一系列形状和尺寸可控的硫族化物半导体纳米晶体。所获得的硫族化物包括CdS,MnS,Ag2S,PbS,Cu1.8S,Bi2S3,ZnS,ZnxCd1-xS以及Ag2Se,Cu2-xSe,CdSe。锰硒此外。将这些可溶于环己烷的单分散纳米晶体组装成水溶性胶体球,并通过控制实验参数实现了组装有序性的调节。硫族化物半导体的一般合成和组装为各种潜在应用提供了理想的基础。

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