石墨烯
量子点
量子产额
拉曼光谱
荧光
分析化学(期刊)
材料科学
检出限
乙二胺
透射电子显微镜
紫狼尾草
化学
光化学
核化学
无机化学
纳米技术
有机化学
色谱法
量子力学
干物质
植物
生物
光学
物理
作者
Fathah Dian Sari,Chotimah,Roto,Indriana Kartini
标识
DOI:10.1088/2053-1591/ace6f6
摘要
Abstract The synthesis of nitrogen-doped Graphene Quantum Dots (N-GQDs) employing Pennisetum purpureum (elephant grass) as the carbon precursor and ethylenediamine (EDA) as the nitrogen source was conducted. This study highlights the potential applications of nitrogen-doped multi-fluorescent graphene quantum dots (N-GQDs) in the detection of Fe 3+ . The synthesized N-GQDs have been studied using UV–vis spectrophotometry, fluorescence spectrometry, Raman spectrometry, FT-IR spectrometry, x-ray spectroscopy, selected-area electron diffraction, transmission and high-transmission electron microscopy. The acquired N-GQDs were observed to have an almost hexagonal shape with a lateral size of 2.42 nm and exhibited a comparable quantum yield of approximately 26%. The N-GQDs that have been prepared with consistent size distribution and a significant amount of nitrogen and oxygen-based functional groups showcase outstanding water dispersity. The N-GQDs exhibited the capability to identify the Fe 3+ ions in a broad range concentration of 1–600 μ M by creating an N-GQDs-Fe 3+ complex through the occurrence of functional groups like nitrogen, carbonyl, and carboxyl on N-GQDs surface, has a lower limit of detection at approximately 60 nM. Our study provides evidence that the N-GQDs produced a strong and persistent fluorescence, which is highly soluble in water, notably the precise and selective detection of Fe 3+ in water-based solutions.
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