首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Influence of the stabilizing ligand on the quality, signal-relevant optical properties, and stability of near-infrared emitting Cd_(1-x)Hg_xTe nanocrystals
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Influence of the stabilizing ligand on the quality, signal-relevant optical properties, and stability of near-infrared emitting Cd_(1-x)Hg_xTe nanocrystals

机译:稳定配体对发射近红外光的Cd_(1-x)Hg_xTe纳米晶体的质量,信号相关的光学性能和稳定性的影响

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摘要

Bright and stable near-infrared (NIR) and infrared (IR) emitting chromophores are in high demand for applications in telecommunication, solar cells, security barcodes, and as fluorescent reporters in bioimaging studies. The best choice for wavelengths >750 nm are semiconductor nanocrystals, especially ternary or alloy nanocrystals like CdHgTe, which enable size and composition control of their optical properties. Here, we report on the influence of growth time and surface chemistry on the composition and optical properties of colloidal CdHgTe. Up to now, these are the only NIR and IR emissive quantum dots, which can be synthesized in high quality in water, using a simple one-pot reaction. For this study we utilized and compared three different thiol ligands, thioglycolic acid (TGA), 3-mercaptopropionic acid (MPA), and glutathione (GSH). Aiming at the rational design of bright NIR- and IR-emissive alloy materials, special emphasis was dedicated to a better understanding of the role of the surface ligand and adsorption-desorption equilibria on the photoluminescence quantum yield and stability. In this respect, dilution and protonation studies were performed. Our results show that with this simple synthetic procedure, strongly fluorescent CdHgTe colloids can be obtained with MPA as stabilizing ligand revealing quantum yields as high as 45% independent of particle concentration.
机译:明亮,稳定的近红外(NIR)和红外(IR)发射发色团对电信,太阳能电池,安全条形码以及生物成像研究中的荧光报告分子都有很高的要求。波长大于750 nm的最佳选择是半导体纳米晶体,尤其是CdHgTe之类的三元或合金纳米晶体,它可以控制其光学特性的尺寸和成分。在这里,我们报告生长时间和表面化学对胶体CdHgTe的组成和光学性质的影响。到目前为止,这是仅有的NIR和IR发射量子点,可以通过简单的一锅反应在水中高质量合成。在本研究中,我们利用并比较了三种不同的硫醇配体,巯基乙酸(TGA),3-巯基丙酸(MPA)和谷胱甘肽(GSH)。针对光亮的近红外和红外发射合金材料的合理设计,我们特别强调了对表面配体和吸附-解吸平衡对光致发光量子产率和稳定性的作用的更好理解。在这方面,进行了稀释和质子化研究。我们的结果表明,通过这种简单的合成程序,可以用MPA作为稳定的配体获得强荧光的CdHgTe胶体,其量子产率高达45%,与颗粒浓度无关。

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