4.6 Article

Fluorescent carbon nanomaterials: quantum dots or nanoclusters?

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PHYSICAL CHEMISTRY CHEMICAL PHYSICS
卷 16, 期 30, 页码 16075-16084

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ROYAL SOC CHEMISTRY
DOI: 10.1039/c4cp00138a

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Despite many efforts, the mechanisms of light absorption and emission of small fluorescent carbon nanoparticles (C-dots) are still unresolved and are a subject of active discussion. In this work we address the question as to whether the fluorescence is a collective property of these nanoparticles or they are composed of assembled individual emitters. Selecting three types of C-dots with violet'', blue'' and green'' emissions and performing a detailed study of fluorescence intensity, lifetime and time-resolved anisotropy as a function of excitation and emission wavelengths together with the effect of viscogen and dynamic fluorescence quencher, we demonstrate that the C-dots represent assemblies of surface-exposed fluorophores. They behave as individual emitters, display electronic anisotropy, do not exchange their excited-state energies via homo-FRET and possibly display sub-nanosecond intra-particle mobility.

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