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Turning Spent Coffee Grounds into Sustainable Precursors for the Fabrication of Carbon Dots

机译:将用过的咖啡渣变成可持续的前驱体以制造碳点

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摘要

Spent coffee grounds (SCGs) are known for containing many organic compounds of interest, including carbohydrates, lipids, phenolic compounds and proteins. Therefore, we investigated them as a potential source to obtain carbon dots (CDs) via a nanotechnology approach. Herein, a comparison was performed between CDs produced by SCGs and classic precursors (e.g., citric acid and urea). The SCG-based CDs were obtained via the one-pot and solvent-free carbonization of solid samples, generating nanosized particles (2.1–3.9 nm). These nanoparticles exhibited a blue fluorescence with moderate quantum yields (2.9–5.8%) and an excitation-dependent emission characteristic of carbon dots. SCG-based CDs showed potential as environmentally relevant fluorescent probes for Fe in water. More importantly, life cycle assessment studies validated the production of CDs from SCG samples as a more environmentally sustainable route, as compared to those using classic reported precursors, when considering either a weight- or a function-based functional unit.
机译:众所周知,用过的咖啡渣(SCG)包含许多有用的有机化合物,包括碳水化合物,脂质,酚类化合物和蛋白质。因此,我们调查了它们作为通过纳米技术方法获得碳点(CD)的潜在来源。本文中,在SCG产生的CD与经典前体(例如柠檬酸和尿素)之间进行了比较。通过一锅法和无溶剂碳化固体样品获得基于SCG的CD,生成纳米尺寸的颗粒(2.1-3.9 nm)。这些纳米粒子显示出具有中等量子产率(2.9-5.8%)的蓝色荧光,并且具有依赖于激发的碳点发射特征。基于SCG的CD显示出潜在的水中铁离子的环保探针。更重要的是,与考虑使用基于重量或功能的功能单元相比,与使用经典报道前体的CDG相比,生命周期评估研究证实了SCG样品CD的生产是一种更具环境可持续性的途径。

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