State Key Laboratory of Electroanalytical Chemistry, Changchun Institute of Applied Chemistry, Graduate School of the Chinese Academy of Sciences, Chinese Academy of Sciences, Changchun, 130022, China.
Analyst. 2009 Jul;134(7):1477-82. doi: 10.1039/b823471j. Epub 2009 Apr 14.
A simple, sensitive fluorescent method for detecting cyanide has been developed based on the inner filter effect (IFE) of silver nanoparticles (Ag NPs). With a high extinction coefficient and tunable plasmon absorption feature, Ag NPs are expected to be a powerful absorber to tune the emission of the fluorophore in the IFE-based fluorescent assays. In the present work, we developed a turn-on fluorescent assay for cyanide based on the strong absorption of Ag NPs to both excitation and emission light of an isolated fluorescence indicator. In the presence of cyanide, the absorber Ag NPs will dissolve gradually, which then leads to recovery of the IFE-decreased emission of the fluorophore. The concentration of Ag NPs in the detection system was found to affect the fluorescence response toward cyanide greatly. Under the optimum conditions, the present IFE-based approach can detect cyanide ranging from 5.0 x 10(-7) to 6.0 x 10(-4) M with a detection limit of 2.5 x 10(-7) M, which is much lower than the corresponding absorbance-based approach and compares favorably with other reported fluorescent methods. In addition, the present method possesses a good selectivity for cyanide over other common anions and further application in cyanide-spiked water samples suggested a recovery between 98.2 and 101.4%. Therefore, our proposed IFE-based fluorescent method is expected to be applied for cyanide determination in practical applications.
一种基于银纳米粒子(Ag NPs)内滤效应(IFE)的简单、灵敏的荧光法已被开发用于检测氰化物。Ag NPs 具有高消光系数和可调谐等离子体吸收特性,有望成为一种强大的吸收剂,用于调节 IFE 荧光分析中荧光团的发射。在本工作中,我们开发了一种基于 Ag NPs 对荧光指示剂的激发和发射光的强吸收的用于检测氰化物的荧光开启型分析方法。在存在氰化物的情况下,吸收剂 Ag NPs 将逐渐溶解,从而导致 IFE 降低的荧光团发射恢复。发现在检测系统中 Ag NPs 的浓度对氰化物的荧光响应有很大影响。在最佳条件下,本 IFE 方法可检测 5.0 x 10(-7) 至 6.0 x 10(-4) M 范围内的氰化物,检测限为 2.5 x 10(-7) M,比相应的吸光法低得多,与其他已报道的荧光方法相比具有优势。此外,本方法对氰化物具有良好的选择性,优于其他常见阴离子,进一步将其应用于氰化物加标水样中,回收率在 98.2%至 101.4%之间。因此,我们提出的基于 IFE 的荧光法有望应用于实际应用中氰化物的测定。