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首页> 外文期刊>Nanoscale >Structural and spectroscopic characterization of pyrene derived carbon nano dots: a single-particle level analysis
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Structural and spectroscopic characterization of pyrene derived carbon nano dots: a single-particle level analysis

机译:结构和光谱特性芘衍生碳纳米点:a单粒子水平分析

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摘要

The bottom-up approach has been widely used for large-scale synthesis of carbon nanodots (CNDs). However, the structure and origin of photoluminescence in CNDs synthesized by the bottom-up approach is still a subject of debate. Here, using a series of separation techniques like solvent extraction, column chromatography, gel electrophoresis and dialysis, we present three distinct fluorescent components in CNDs synthesized from pyrene, a well-known precursor molecule. The separated components have qualitative and quantitatively different absorption and emission spectral features including quantum yield (QY). Optical and vibrational spectroscopy techniques combined with electron microscopy indicate that a subtle balance between the extent of graphitization and the presence of molecular fluorophores determines the nature of fluorescence emission. A substantial difference in photons/cycle, single-particle fluorescence blinking, ON–OFF photoswitching strongly supports the distinct nature of the components.
机译:自底向上的方法得到了广泛的应用大规模合成的碳nanodots(组合)。然而,结构和起源光致发光的组合合成自底向上的方法仍然是一个争论的话题。在这里,使用一系列的分离技术如溶剂萃取、柱层析法凝胶电泳和透析,我们礼物三个不同的荧光组件组合从芘合成,一个著名的前兆分子。定性和定量不同吸收和发射光谱特性包括量子产率(QY)。振动光谱技术结合电子显微镜表明一种微妙的石墨化程度和之间的平衡分子荧光团的存在决定了荧光发射的性质。实质性的区别在光子/周期,单粒子荧光闪烁,开关光电开关不同的强烈支持自然的组件。

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