Carbon dots are an emerging class of carbon-based nanostructures produced by low-cost raw materials which exhibit a widely-tunable photoluminescence and a high quantum yield. The potential of these nanomaterials as a substitute of semiconductor quantum dots in optoelectronics and biomedicine is very high, however they need a customized chemistry to be integrated in host-guest systems or functionalized in core-shell structures. This review is focused on recent advances of the sol-gel chemistry applied to the C-dots technology. The surface modification, the fine tailoring of the chemical composition and the embedding into a complex nanostructured material are the main targets of combining sol-gel processing with C-dots chemistry. In addition, the synergistic effect of the sol-gel precursor combined with the C-dots contribute to modify the intrinsic chemo-physical properties of the dots, empowering the emission efficiency or enabling the tuning of the photoluminescence over a wide range of the visible spectrum.

Sol-Gel Chemistry for Carbon Dots / Malfatti, Luca; Innocenzi, Plinio. - In: THE CHEMICAL RECORD. - ISSN 1527-8999. - 18:(2018), pp. 1192-1202. [10.1002/tcr.201700108]

Sol-Gel Chemistry for Carbon Dots

Malfatti, Luca;Innocenzi, Plinio
2018-01-01

Abstract

Carbon dots are an emerging class of carbon-based nanostructures produced by low-cost raw materials which exhibit a widely-tunable photoluminescence and a high quantum yield. The potential of these nanomaterials as a substitute of semiconductor quantum dots in optoelectronics and biomedicine is very high, however they need a customized chemistry to be integrated in host-guest systems or functionalized in core-shell structures. This review is focused on recent advances of the sol-gel chemistry applied to the C-dots technology. The surface modification, the fine tailoring of the chemical composition and the embedding into a complex nanostructured material are the main targets of combining sol-gel processing with C-dots chemistry. In addition, the synergistic effect of the sol-gel precursor combined with the C-dots contribute to modify the intrinsic chemo-physical properties of the dots, empowering the emission efficiency or enabling the tuning of the photoluminescence over a wide range of the visible spectrum.
2018
Sol-Gel Chemistry for Carbon Dots / Malfatti, Luca; Innocenzi, Plinio. - In: THE CHEMICAL RECORD. - ISSN 1527-8999. - 18:(2018), pp. 1192-1202. [10.1002/tcr.201700108]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11388/209481
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