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      The synthetic strategies, photoluminescence mechanisms and promising applications of carbon dots: Current state and future perspective

      , , ,
      Carbon
      Elsevier BV

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          Electrophoretic analysis and purification of fluorescent single-walled carbon nanotube fragments.

          Arc-synthesized single-walled carbon nanotubes have been purified through preparative electrophoresis in agarose gel and glass bead matrixes. Two major impurities were isolated: fluorescent carbon and short tubular carbon. Analysis of these two classes of impurities was done. The methods described may be readily extended to the separation of other water-soluble nanoparticles. The separated fluorescent carbon and short tubule carbon species promise to be interesting nanomaterials in their own right.
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            Quantum-sized carbon dots for bright and colorful photoluminescence.

            We report that nanoscale carbon particles (carbon dots) upon simple surface passivation are strongly photoluminescent in both solution and the solid state. The luminescence emission of the carbon dots is stable against photobleaching, and there is no blinking effect. These strongly emissive carbon dots may find applications similar to or beyond those of their widely pursued silicon counterparts.
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              Luminescent Carbon Nanodots: Emergent Nanolights

              Similar to its popular older cousins the fullerene, the carbon nanotube, and graphene, the latest form of nanocarbon, the carbon nanodot, is inspiring intensive research efforts in its own right. These surface-passivated carbonaceous quantum dots, so-called C-dots, combine several favorable attributes of traditional semiconductor-based quantum dots (namely, size- and wavelength-dependent luminescence emission, resistance to photobleaching, ease of bioconjugation) without incurring the burden of intrinsic toxicity or elemental scarcity and without the need for stringent, intricate, tedious, costly, or inefficient preparation steps. C-dots can be produced inexpensively and on a large scale (frequently using a one-step pathway and potentially from biomass waste-derived sources) by many approaches, ranging from simple candle burning to in situ dehydration reactions to laser ablation methods. In this Review, we summarize recent advances in the synthesis and characterization of C-dots. We also speculate on their future and discuss potential developments for their use in energy conversion/storage, bioimaging, drug delivery, sensors, diagnostics, and composites.
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                Author and article information

                Journal
                Carbon
                Carbon
                Elsevier BV
                00086223
                January 2022
                January 2022
                : 186
                : 91-127
                Article
                10.1016/j.carbon.2021.10.002
                2607d25f-9dba-4efe-98c7-e4883d11e5c5
                © 2022

                https://www.elsevier.com/tdm/userlicense/1.0/

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