吸光度
化学
抗坏血酸
抗氧化剂
DPPH
检出限
核化学
色谱法
比色法
纳米颗粒
生物相容性
荧光
碳纤维
分析化学(期刊)
纳米技术
材料科学
有机化学
复合材料
物理
复合数
量子力学
食品科学
作者
Ying Guo,Te Li,Lianwu Xie,Xia Tong,Cui Tang,Shuyun Shi
标识
DOI:10.1007/s00216-020-03049-x
摘要
The synthesis of fascinating multifunctional carbon dots (CDs) attracted immense attention. Here, a facile solvothermal treatment of red pitaya peels in acetic acid produced CDs (designated as ACDs, excitation/emission wavelengths at 357/432 nm). ACDs with high sp2-hybridized carbon and carboxylic group contents can rapidly and selectively reduce Au3+ to Au0, and stabilize produced Au nanoparticles (AuNPs). The synergetic effect of electron transfer from ACDs to Au3+ and inner filter effect (IFE) from ACDs to AuNPs quenches the fluorescence within 30 s. Simultaneously, the resulting AuNPs have a purple color with a maximum absorption at 545 nm for visual detection. Therefore, for the first time, we reported a fluorometric and colorimetric dual-mode sensing system for real-time, highly sensitive and selective detection of Au3+. The fluorescence quenching ratio and absorbance change linearly with the increase of Au3+ concentration in the range of 0.3–8.0 μM and 3.3–60.0 μM with limits of detection (LODs) at 0.072 μM and 2.2 μM, respectively. The assay was applied for Au3+ determination in spiked real water samples with recoveries from 95.5 to 105.0%, and relative standard deviation (RSD) of less than 6.5%. Furthermore, ACDs with good photostability, low cytotoxicity, and excellent biocompatibility were successfully applied for intracellular Au3+ sensing and imaging. In addition, ACDs exhibited an extraordinarily high antioxidant activity, with an IC50 value for DPPH radical scavenging (0.70 μg mL−1) much lower than that of ascorbic acid (4.34 μg mL−1). The proposed strategy demonstrates the outstanding properties of ACDs in chemical and biomedical analysis.
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