Department of Chemistry, Faculty of Science, Shahid Chamran University of Ahvaz, Ahvaz, Iran.
Chemistry and Chemical Engineering Research Center of Iran, P. O. Box 14335-186, Tehran, Iran.
Anal Sci. 2020 Nov 10;36(11):1297-1301. doi: 10.2116/analsci.20P101. Epub 2020 Jun 5.
This article presents a sensitive and straightforward colorimetric chemosensor for the determination of phosphate ion utilizing curcumin nanoparticles (CUNPs) as the sensing system. The color of as-prepared CUNPs can be changed from yellow to orange upon adding iron(III) ions due to the formation of a complex with CUNPs. However, in the presence of phosphate ions, iron(III) ions prefer to bind to phosphate ions and, subsequently the color of CUNPs is selectively recovered because of releasing the iron(III) ions from the CUNPs-iron(III) complex. Therefore, in this work the selective color changing of the CUNPs-iron(III) system upon the addition of phosphate ions was used for the quantitative sensing of phosphate ions. Various factors, such as the pH, concentration of iron(III) and volume of CUNPs, were examined and the optimum conditions were established. A linear calibration graph over the range of 10 - 400 ng mL for phosphate (r = 0.9995) was achieved using the optimal conditions. The limit of detection (LOD) of the proposed method for phosphate was 7.1 ng mL and the relative standard deviation (RSD) for measuring 50 ng mL of phosphate was 3.7% (n = 8). The developed method was applied for the measurement of phosphate in water, soil, and bone samples. Satisfactory results were obtained.
本文提出了一种利用姜黄素纳米粒子(CUNPs)作为传感体系测定磷酸根离子的灵敏、直接的比色化学传感器。由于 CUNPs 与铁(III)离子形成配合物,因此制备的 CUNPs 的颜色可以从黄色变为橙色。然而,在存在磷酸根离子的情况下,铁(III)离子更倾向于与磷酸根离子结合,随后由于从 CUNPs-铁(III)配合物中释放出铁(III)离子,CUNPs 的颜色被选择性地恢复。因此,在这项工作中,CUNPs-铁(III)体系在加入磷酸根离子时的选择性颜色变化被用于定量检测磷酸根离子。研究了各种因素,如 pH 值、铁(III)浓度和 CUNPs 体积,并确定了最佳条件。在最佳条件下,磷酸盐的线性校准曲线范围为 10 - 400 ng mL(r = 0.9995)。该方法测定磷酸盐的检出限(LOD)为 7.1 ng mL,测量 50 ng mL 磷酸盐的相对标准偏差(RSD)为 3.7%(n = 8)。该方法已用于水、土壤和骨样品中磷酸盐的测定,获得了令人满意的结果。