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Photoluminescence Enhancement of CdSe Quantum Dots: A Case of Organogel-Nanoparticle Symbiosis

机译:CdSe量子点的光致发光增强:一例有机凝胶-纳米粒子共生。

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摘要

Highly fluorescent organogels (QD-organogel), prepared by combining a pseudopeptidic macrocycle and different types of CdSe quantum dots (QDs), have been characterized using a battery of optical and microscopic techniques. The results indicate that the presence of the QDs not only does not disrupt the supramolecular organization of the internal fibrillar network of the organogel to a significant extent, but it also decreases the critical concentration of gelator needed to form stable and thermoreversible organogels. Regarding the photophysical properties of the QDs, different trends were observed depending on the presence of a ZnS inorganic shell around the CdSe core. Thus, while the core-shell QDs preserve their photophysical properties in the organogel medium, a high to moderate increase of the fluorescence intensity (up to 528%) and the average lifetime (up to 1.7), respectively, was observed for the core QDs embedded in the organogel. The results are relevant for the development of luminescent organogels based on quantum dots, which have potential applications as advanced hybrid materials in different fields.
机译:通过使用伪光学大环化合物和不同类型的CdSe量子点(QD)组合而成的高荧光有机凝胶(QD-organogel),已使用一系列光学和显微技术进行了表征。结果表明,QD的存在不仅不会在很大程度上破坏有机凝胶内部原纤维网络的超分子组织,而且还会降低形成稳定且热可逆有机凝胶所需的胶凝剂的临界浓度。关于量子点的光物理性质,观察到不同的趋势,这取决于围绕CdSe核的ZnS无机壳的存在。因此,尽管核壳量子点在有机凝胶介质中保留了其光物理性质,但对于核心量子点,分别观察到了荧光强度的高至中等增加(高达528%)和平均寿命(高达1.7)。嵌入有机凝胶中。该结果与基于量子点的发光有机凝胶的开发有关,其在不同领域中作为先进的混合材料具有潜在的应用。

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  • 来源
    《Journal of the American Chemical Society》 |2012年第50期|20554-20563|共10页
  • 作者单位

    Universitat Jaume I, Departamento de Quimica Inorganica y Organica, Av. Sos Baynat, s, E-12071 Castellon, Spain;

    Institute de Ciencia Molecular, Universidad de Valencia, c/Catedratico Jose Beltran 2, Paterna, 46980 Valencia, Spain,Departamento de Quimica Analitica, Edificio de Investigation, Universidad de Valencia, Dr. Moliner 50, 46100 Burjassot, Valencia,Spain;

    Universitat Jaume I, Departamento de Quimica Inorganica y Organica, Av. Sos Baynat, s, E-12071 Castellon, Spain;

    Institute de Ciencia Molecular, Universidad de Valencia, c/Catedratico Jose Beltran 2, Paterna, 46980 Valencia, Spain;

    Universitat Jaume I, Departamento de Quimica Inorganica y Organica, Av. Sos Baynat, s, E-12071 Castellon, Spain;

    Institute de Ciencia Molecular, Universidad de Valencia, c/Catedratico Jose Beltran 2, Paterna, 46980 Valencia, Spain,Universidad Nacional de Cordoba, Departamento de Quimica Organica, Haya de la Torre y Medina Allende, s, 5000 Cordoba, Argentina;

    Universitat Jaume I, Departamento de Quimica Inorganica y Organica, Av. Sos Baynat, s, E-12071 Castellon, Spain;

    Institute de Ciencia Molecular, Universidad de Valencia, c/Catedratico Jose Beltran 2, Paterna, 46980 Valencia, Spain;

    Universitat Jaume I, Departamento de Quimica Inorganica y Organica, Av. Sos Baynat, s, E-12071 Castellon, Spain;

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  • 入库时间 2022-08-18 03:13:41

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