One-Pot Synthesis of Green-Emitting Nitrogen-Doped Carbon Dots from Xylose

Author:

Rodríguez-Carballo Gabriela1ORCID,García-Sancho Cristina1ORCID,Algarra Manuel2ORCID,Castro Eulogio3ORCID,Moreno-Tost Ramón1ORCID

Affiliation:

1. Department of Inorganic Chemistry, Faculty of Science, Campus de Teatinos s/n, University of Málaga, 29071 Malaga, Spain

2. Department of Sciences, INAMAT2-Institute for Advanced Materials and Mathematics, Public University of Navarre, Campus de Arrosadía, 31006 Pamplona, Spain

3. Department Chemical, Environmental and Materials Engineering, Center for Advanced Studies in Earth Sciences, Energy and Environment (CEACTEMA), Universidad de Jaén, Campus las Lagunillas, 23071 Jaén, Spain

Abstract

Carbon dots (CDs) are interesting carbon nanomaterials that exhibit great photoluminescent features, low cytotoxicity, and excellent water stability and solubility. For these reasons, many fields are starting to integrate their use for a variety of purposes. The catalytic performance of VOPO4 has been evaluated in the synthesis of nitrogen-doped carbon dots (N-CDs). The synthesis reaction was carried out at 180 °C using VOPO4 as a heterogeneous catalyst for 2 to 4 h of reaction time. After reaction, the N-CDs were purified using a novel method for the protection of the functional groups over the surfaces of the N-CDs. The morphological, superficial, and photoelectronic properties of the N-CDs were thoroughly studied by means of TEM, HRTEM, XPS, and photoluminescence measurements. The conversion of the carbon precursor was followed by HPLC. After three catalytic runs, the catalyst was still active while ensuring the quality of the N-CDs obtained. After the third cycle, the catalyst was regenerated, and it recovered its full activity. The obtained N-CDs showed a great degree of oxidized groups in their surfaces that translated into high photoluminescence when irradiated under different lasers. Due to the observed photoelectronic properties, they were then assayed in the photocatalytic degradation of methyl orange.

Funder

Spanish Ministry of Science and Innovation

FEDER funds

Regional Government of Andalusia

Publisher

MDPI AG

Subject

Physical and Theoretical Chemistry,Catalysis,General Environmental Science

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