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A Review on Multifunctional Carbon-Dots Synthesized From Biomass Waste: Design/Fabrication, Characterization and Applications

期刊

FRONTIERS IN ENERGY RESEARCH
卷 9, 期 -, 页码 -

出版社

FRONTIERS MEDIA SA
DOI: 10.3389/fenrg.2021.626549

关键词

biomass waste; bandgap tuning; carbon dots; green synthesis; sustainable raw materials; fabrication parameters

资金

  1. Universiti Teknologi MARA [600-IRMI/DANA 5/3/BESTARI (115/2018), 600-IRMI/GPK 5/3 (153/2020), 600-RMC 5/3 GRR (005/2020), 600-IRMI 5/3/GIP (070/2019)]

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The unique properties of C-Dots, such as high biocompatibility, low toxicity, nano-scale size, and tunable photoluminescence performance, make them a promising platform for various applications. They can be prepared using top-down and bottom-up approaches, with the latter being commonly used for large scale and low-cost synthesis. C-Dots can be synthesized from sustainable raw materials or green biomass, promoting environmental friendliness and waste minimization.
Carbon-Dots (C-Dots) have drawn much attention in recent years owing to their remarkable properties such as high biocompatibility, low toxicity, nano-scale size, and ease of modification with good tuneable photoluminescence performance. These unique properties have led C-Dots to become a promising platform for bioimaging, metal ion sensing and an antibacterial agent. C-Dots can be prepared using the top-down and bottom-up approaches, in which the latter method is commonly used for large scale and low-cost synthesis. C-Dots can be synthesized using sustainable raw materials or green biomass since it is environmentally friendly, in-expensive and most importantly, promotes the minimization of waste production. However, using biomass waste to produce high-quality C-Dots is still a matter of concern waiting for resolution, and this will be the main focus of this review. Fundamental understanding of C-Dots such as structure analysis, physical and chemical properties of C-Dots, various synthesis methodology and type of raw materials used are also discussed and correlated comprehensively. Additionally, factors affecting the bandgap of the C-Dots and the strategies to overcome these shortcomings are also covered. Moreover, formation mechanism of C-Dots focusing on the hydrothermal method, option and challenges to scale up the C-Dots production are explored. It is expected that the great potential of producing C-Dots from agricultural waste a key benefit in view of their versatility in a wide range of applications.

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