Application of biomass carbon dots in food packaging

IF 5.8 3区 环境科学与生态学 0 ENVIRONMENTAL SCIENCES Environmental Science and Pollution Research Pub Date : 2025-01-04 DOI:10.1007/s11356-024-35818-x
Peipei Zhang, Shiyu Gao, Li Xu, Changyan Xu
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Abstract

Since its discovery, carbon quantum dots (CDs) have been widely applied in cell imaging, drug delivery, biosensing, and photocatalysis due to their excellent water solubility, chemical stability, fluorescence stability biocompatibility, low toxicity, and preparation cost. However, the low fluorescence yield and poor surface structure limit the application of CDs. Heteroatom doping is considered an ideal method to improve CDs’ optical and electrical properties. From this perspective, eco-friendly biomass and its derivatives are perfect carbon precursors for CDs because they contain the heteroatoms needed to modify CDs, and their complex chemical composition gives CDs a wide variety of surface functional groups. Besides, converting biomass waste into high-value-added CDs is also an innovation in biomass waste treatment. Therefore, this paper focuses on the carbon precursors of biomass CDs. At the same time, food packaging occupies an essential position in the industry, and fluorescent CDs with good fluorescence properties, high chemical stability, and good photobleaching properties have great application potential in packaging innovation techniques that have emerged in recent years, but relevant reports are scarce and scattered. Considering that the surface morphology, chemical structure, and optical and electrical properties of biomass CDs are primarily affected by the carbon precursors’ chemical structure and preparation method, this paper also focuses on the synthesis method of biomass CDs and its application in anti-counterfeiting packaging, intelligent packaging, antioxidant packaging, and antibacterial packaging.

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生物质碳点在食品包装中的应用。
碳量子点(carbon quantum dots, CDs)自被发现以来,由于其优异的水溶性、化学稳定性、荧光稳定性、生物相容性、低毒性和制备成本等优点,在细胞成像、药物传递、生物传感和光催化等领域得到了广泛的应用。然而,低荧光产率和表面结构差限制了CDs的应用。杂原子掺杂被认为是改善CDs光学和电学性能的理想方法。从这个角度来看,生态友好型生物质及其衍生物是CDs的完美碳前体,因为它们含有修饰CDs所需的杂原子,并且它们复杂的化学成分使CDs具有各种各样的表面官能团。此外,将生物质废弃物转化为高附加值cd也是生物质废弃物处理的一大创新。因此,本文重点研究了生物质CDs的碳前体。同时,食品包装在行业中占据着必不可少的地位,荧光性能好、化学稳定性高、光漂白性能好的荧光cd在近年涌现的包装创新技术中具有很大的应用潜力,但相关报道较少且零散。考虑到生物质CDs的表面形貌、化学结构和光电性能主要受碳前体化学结构和制备方法的影响,本文还重点研究了生物质CDs的合成方法及其在防伪包装、智能包装、抗氧化包装、抗菌包装等方面的应用。
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来源期刊
CiteScore
8.70
自引率
17.20%
发文量
6549
审稿时长
3.8 months
期刊介绍: Environmental Science and Pollution Research (ESPR) serves the international community in all areas of Environmental Science and related subjects with emphasis on chemical compounds. This includes: - Terrestrial Biology and Ecology - Aquatic Biology and Ecology - Atmospheric Chemistry - Environmental Microbiology/Biobased Energy Sources - Phytoremediation and Ecosystem Restoration - Environmental Analyses and Monitoring - Assessment of Risks and Interactions of Pollutants in the Environment - Conservation Biology and Sustainable Agriculture - Impact of Chemicals/Pollutants on Human and Animal Health It reports from a broad interdisciplinary outlook.
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