4.4 Review

Green Carbon Dots: Synthesis, Characterization, Properties and Biomedical Applications

期刊

JOURNAL OF FUNCTIONAL BIOMATERIALS
卷 14, 期 1, 页码 -

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MDPI
DOI: 10.3390/jfb14010027

关键词

carbon dots; natural resources; green synthesis; fluorescent nanoparticles; biomedicine; biomedical applications

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Carbon dots (CDs) are a type of crystalline, quasi-spherical fluorescence nanomaterials with a size between 1 nm to 10 nm. Green CDs are synthesized from renewable biomass and have distinct advantages over physicochemical methods. Green CDs can be synthesized using various plant-based organic resources and have diverse applications in biomedical fields. This review focuses on the synthesis, characterization techniques, properties, and biomedical applications of green CDs.
Carbon dots (CDs) are a new category of crystalline, quasi-spherical fluorescence, zero-dimensional carbon nanomaterials with a spatial size between 1 nm to 10 nm and have gained widespread attention in recent years. Green CDs are carbon dots synthesised from renewable biomass such as agro-waste, plants or medicinal plants and other organic biomaterials. Plant-mediated synthesis of CDs is a green chemistry approach that connects nanotechnology with the green synthesis of CDs. Notably, CDs made with green technology are economical and far superior to those manufactured with physicochemical methods due to their exclusive benefits, such as being affordable, having high stability, having a simple protocol, and being safer and eco-benign. Green CDs can be synthesized by using ultrasonic strategy, chemical oxidation, carbonization, solvothermal and hydrothermal processes, and microwave irradiation using various plant-based organic resources. CDs made by green technology have diverse applications in biomedical fields such as bioimaging, biosensing and nanomedicine, which are ascribed to their unique properties, including excellent luminescence effect, strong stability and good biocompatibility. This review mainly focuses on green CDs synthesis, characterization techniques, beneficial properties of plant resource-based green CDs and their biomedical applications. This review article also looks at the research gaps and future research directions for the continuous deepening of the exploration of green CDs.

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