Luminescent Carbon Nanodots: Emergent Nanolights

Люминесцентные углеродные наноточки: новые нанофонари
Sheila N. Baker, Gary A. Baker
2010-08-04

bioimagingcarbon nanodotslaser ablationquantum dot luminescencesurface passivation
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.
1
C-dots combine photostability and facile bioconjugation with reduced concerns about intrinsic toxicity and elemental scarcity compared with traditional semiconductor quantum dots.
2
C-dots show potential for energy conversion and storage, bioimaging, drug delivery, sensing, diagnostics, and composite materials.
3
Carbon nanodots are surface-passivated carbonaceous quantum dots exhibiting size- and wavelength-dependent luminescence.
4
Reported synthesis approaches range from candle burning and in situ dehydration to laser ablation.
5
They can be produced inexpensively and at large scale through diverse methods, often involving one-step processes and potentially biomass-waste feedstocks.

surface-passivated carbonaceous quantum dots (carbon nanodots, C-dots)

recent advances in the synthesis and characterization of C-dots, including their luminescence and potential applications

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2010-08-04
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Sheila N. Baker
Gary A. Baker
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