Photoluminescent Carbon Quantum Dots from Dichrostachys glomerata Pods with Antioxidant and Cu2+ Chelating Properties

Author:

Djiazet Steve1,Desmarets Christophe2,Rinnert Hervé3,Jasniewski Jordane4,Medjahdi Ghouti3,Balan Lavinia5,Schneider Raphaël1ORCID

Affiliation:

1. Université de Lorraine, CNRS LRGP F-54000 Nancy France

2. Sorbonne Université, CNRS Institut Parisien de Chimie Moléculaire IPCM F-75005 Paris France

3. Department Université de Lorraine, CNRS IJL F-54000 Nancy France

4. Université de Lorraine LIBio F-54000 Nancy France

5. Department CEMHTI-UPR 3079 CNRS Site Haute Température 1D avenue de la Recherche Scientifique 45071 Orléans France

Abstract

AbstractThis work presents the facile and single‐step hydrothermal synthesis of carbon quantum dots (CQDs) using the Dichrostachys glomerata extract as raw material. CQDs with the highest photoluminescence (PL) were obtained after heating the extract in 4 M NaOH at 200 °C for 7 h. The obtained CQDs exhibit an average size of ca. 4.7 nm, a green‐yellow PL emission independent on the excitation wavelength with contributions located at 478 and 562 nm, a monoexponential decay of their PL lifetime and a PL quantum yield of 18 %. These results indicate that the surface functionalization of sp2 clusters in CQDs is uniform. The antioxidant properties of CQDs were also investigated. CQDs can effectively reduce free radicals like superoxide or oxidants like KMnO4. Moreover, CQDs show a high Cu2+ chelating activity, which is attributed to the abundant carboxylate functions on their surface and may therefore be of high interest in therapeutic applications related to Cu2+ ions overload.

Publisher

Wiley

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