4.5 Review

An overview of synthetic methods and applications of photoluminescence properties of carbon quantum dots

Journal

LUMINESCENCE
Volume 38, Issue 7, Pages 845-866

Publisher

WILEY
DOI: 10.1002/bio.4255

Keywords

applications of CQDs; carbon quantum dots; carbon-based nanomaterials; green synthesis; nanohybrids; natural waste

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Carbon quantum dots (CQDs) are promising carbonaceous nanomaterials with unique properties and wide applications. They are known for their excellent solubility and luminescence, and can be efficiently and economically prepared through sustainable chemical strategies. Recent advances have been made in the photoluminescence applications of CQDs in chemical and biological fields.
Carbon quantum dots (CQDs) are promising carbonaceous nanomaterials fortuitously discovered in 2004. CQDs are the rising stars in the nanotechnology ensemble because of their unique properties and widespread applications in sensing, imaging, medicine, catalysis, and optoelectronics. CQDs are notable for their excellent solubility and effective luminescence and, as a result, they are also known as carbon nanolights. Many strategies are used for the efficient and economical preparation of CQDs; however, CQDs prepared from waste or green sustainable methods have greater requirements due to their safety and ease of synthesis. Sustainable chemical strategies for CQDs have been developed, emphasizing green synthetic methodologies based on 'top-down' and 'bottom-up' approaches. This review summarizes many such studies relevant to the development of sustainable methods for photoluminescent CQDs. Furthermore, we have emphasized recent advances in CQDs' photoluminescence applications in chemical and biological fields. Finally, a brief overview of synthetic processes using the green source and their associated applications are tabulated, providing a clear understanding of the new optoelectronic materials.

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