Department of Medicinal and Applied Chemistry, Kaohsiung Medical University, Kaohsiung 80708, Taiwan.
Department of Chemistry Education, Universitas Serambi Mekkah, Aceh 23245, Indonesia.
Sensors (Basel). 2019 Nov 16;19(22):5008. doi: 10.3390/s19225008.
In this study, a simple and green hydrothermal treatment was performed to prepare nitrogen-doped carbon dots (NCDs) from Averrhoa carambola (AC) fruit extract as a carbon precursor and L-arginine (Arg) as a nitrogen dopant. The AC-NCDs were characterized by UV light, fluorescence spectroscopy, transmission electron microscopy, FTIR spectroscopy, Raman spectroscopy, UV-vis spectroscopy, and zeta potential analyzer. The AC-NCDs were spherical and the average diameter was estimated to be 6.67 nm. The AC-NCDs exhibited the maximum emission intensity at 446 nm with 360 nm excitation wavelength. The fluorescence quenching behavior of AC-NCDs after interacting with methyl orange (MO) dye was studied. The interaction of AC-NCDs and MO was achieved within 3 min and the fluorescence quenching was maintained to a fixed value even after 30 min. The linearity was obtained in the range of 1 to 25 μM MO with a 0.30 μM detection limit. Furthermore, the pH values affected the quenching behavior of the AC-NCDs/MO system where the interaction mechanisms were driven by the electrostatic interaction, π-π interaction, inner filter effect, and energy transfer. The pH 5 maintained higher quenching efficiency while other pH values slightly decreased the quenching efficiency. Incoming applications, the AC-NCDs can be used in various important fields, especially for environmental protection.
在这项研究中,我们采用简单环保的水热法,以杨桃(AC)果实提取物作为碳前体,L-精氨酸(Arg)作为氮掺杂剂,制备氮掺杂碳点(NCDs)。AC-NCDs 通过紫外光、荧光光谱、透射电子显微镜、傅里叶变换红外光谱、拉曼光谱、紫外可见光谱和 Zeta 电位分析仪进行了表征。AC-NCDs 呈球形,平均直径估计为 6.67nm。AC-NCDs 在 360nm 激发波长下,最大发射强度位于 446nm。研究了 AC-NCDs 与甲基橙(MO)染料相互作用后的荧光猝灭行为。AC-NCDs 与 MO 的相互作用在 3 分钟内完成,即使在 30 分钟后,荧光猝灭仍保持在固定值。MO 的线性范围为 1 至 25 μM,检测限为 0.30 μM。此外,pH 值影响 AC-NCDs/MO 体系的猝灭行为,其中相互作用机制由静电相互作用、π-π 相互作用、内滤效应和能量转移驱动。pH 值为 5 时保持较高的猝灭效率,而其他 pH 值则略微降低猝灭效率。未来的应用中,AC-NCDs 可用于各个重要领域,特别是在环境保护方面。