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Synthesis of super bright indium phosphide colloidal quantum dots through thermal diffusion

机译:通过热扩散合成超亮铟磷化铟胶质量子点

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Indium phosphide based quantum dots have emerged in recent years as alternatives to traditional heavy metal (cadmium, lead) based materials suitable for biomedical application due to their non-toxic nature. The major barrier to this application, is their low photoluminescent quantum yield in aqueous environments (typically  5%). Here we present a synthetic method for InP/ZnS quantum dots, utilizing a controlled cooling step for equilibration of zinc sulfide across the core, resulting in a photoluminescent quantum yield as high as 85% in organic solvent and 57% in aqueous media. To the best of our knowledge, this is the highest reported for indium phosphide quantum dots. DFT calculations reveal the enhancement in quantum yield is achieved by redistribution of zinc sulfide across the indium phosphide core through thermal diffusion. By eliminating the need for a glove box and relying on Schlenk line techniques, we introduce a widely accessible method for quantum dots with a realistic potential for improved biomedical applications. The low toxicity of indium phosphide quantum dots makes them attractive candidates for biomedical applications but they typically exhibit low low photoluminescent quantum yield in aqueous media. Here the authors report a controlled-cooling based synthetic method which produces super bright quantum dots.
机译:近年来,磷化铟基量子点作为传统重金属(镉,铅)基于基于生物医学应用的材料的替代品出现,这是由于它们的无毒性质。本申请的主要屏障,是它们在水性环境中的低光致发光量子产率(通常<5%)。在这里,我们提出了一种用于InP / ZnS量子点的合成方法,利用受控冷却步骤,用于将硫化锌平衡芯,在有机溶剂中高达85%的光致发光量子产率和57%的水性介质。据我们所知,这是磷化铟Quantum点报告的最高报道。 DFT计算揭示了通过热扩散通过磷化铟核的硫化锌再分布来实现量子产率的增强。通过消除对手套箱并依赖于Schlenk线路技术的需求,我们为量子点引入了广泛的可访问方法,具有改进的生物医学应用的逼真潜力。磷化铟量子点的低毒性使其成为生物医学应用的吸引力,但它们通常在水性介质中表现出低的低光致发光量子产率。此处提出了一种基于控制的冷却冷却的合成方法,它产生超亮量子点。

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