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基于生物质西瓜皮碳点的分子印迹整体和溶胶凝胶光学传感用于检测酒精饮料中的氨基甲酸乙酯。

Molecularly imprinted bulk and solgel optosensing based on biomass carbon dots derived from watermelon peel for detection of ethyl carbamate in alcoholic beverages.

机构信息

Beijing Technology and Business University, 11 Fucheng Road, Beijing, 100048, China.

出版信息

Mikrochim Acta. 2022 Jul 19;189(8):286. doi: 10.1007/s00604-022-05388-1.

Abstract

Biomass carbon dots synthesized by biological waste conform to the trend of ecological environmental protection and the requirements of green chemistry, which show great application potential in practice. In the study, we used watermelon peels as the raw materials to synthesize a novel blue biomass carbon dots (CDs) by a hydrothermal process with high fluorescence quantum yield of 22.8%. Through bulk polymerization and solgel method, two kinds of core-shell nanospheres were developed as fluorescent probes to recognize and detect ethyl carbamate (EC) rapidly without complex samples pretreatment. The obtained CDs@MIPs integrated the high-performance optical characteristics of CDs with excellent selectivity and adsorption of MIPs, which showed ideal linear relationships in the EC concentration range 1-120 μg L and low LOD of 0.57 μg L and 0.94 μg L, respectively. Both CDs@MIPs have a short equilibration time which was around 20 min, and the imprinting factors (IF) are 4.04 and 2.62. The recoveries of the six spiked samples were satisfying, and the RSD precisions were lower than 5.57%. Gas chromatography-mass spectrometry was seen as a parallel analysis to validate the correctness of the results, which indicated the practicability and reliability of the developed method. This proposal strategy of optical sensors provided an effective channel for trace EC recognition, with numerous advantages, involving eco-friendly, low cost, high sensitivity, separation effect, and good selectivity.

摘要

生物废料合成的生物质碳点符合生态环境保护的趋势和绿色化学的要求,在实践中具有巨大的应用潜力。在研究中,我们使用西瓜皮作为原料,通过水热法合成了一种新型蓝色生物质碳点(CDs),其荧光量子产率高达 22.8%。通过本体聚合和溶胶-凝胶法,开发了两种核壳纳米球作为荧光探针,无需复杂的样品预处理,可快速识别和检测氨基甲酸乙酯(EC)。所得的 CDs@MIPs 结合了 CDs 的高性能光学特性和 MIPs 的优异选择性和吸附性,在 EC 浓度范围为 1-120μg/L 时表现出理想的线性关系,LOD 分别为 0.57μg/L 和 0.94μg/L。两种 CDs@MIPs 的平衡时间都很短,约为 20min,印迹因子(IF)分别为 4.04 和 2.62。六个加标样品的回收率令人满意,RSD 精密度低于 5.57%。气相色谱-质谱法被视为平行分析以验证结果的正确性,这表明所开发方法的实用性和可靠性。这种光学传感器的建议策略为痕量 EC 的识别提供了一个有效的通道,具有环保、低成本、高灵敏度、分离效果和良好选择性等诸多优点。

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