Key Laboratory of Coastal Zone Environmental Processes and Ecological Remediation, Yantai Institute of Coastal Zone Research (YIC), Chinese Academy of Sciences (CAS), YICCAS, Yantai 264003, China.
Analyst. 2013 Apr 7;138(7):2080-4. doi: 10.1039/c3an36722c. Epub 2013 Feb 19.
A novel label-free colorimetric strategy was reported for sensitive detection of copper ions (Cu(2+)) by using the decelerating etching of gold nanorods (GNRs). H2O2 was employed as the oxidant for corrosion of GNRs, leading to the decrease of the aspect ratio of GNRs. In the absence of Cu(2+), the redox corrosion of GNRs by H2O2 occurred rapidly, causing the distinct color change of GNRs from bluish green to purplish red. By virtue of the strong and specific catalysis by Cu(2+) of the decomposition of H2O2, the rate of redox corrosion can be decelerated. Relevant experimental parameters, including pH value, concentrations of NaSCN and H2O2, incubation temperature and time were evaluated. Under optimal conditions, our method gave a good linear range of 10-300 nM (R = 0.9985) for Cu(2+) and the detection limit with the naked eye is as low as 10 nM. Thus, the proposed colorimetric sensor is simple, sensitive (4.96 nM) and selective, and it has been successfully applied to detect Cu(2+) in shellfish samples. Moreover, the potential mechanism was also discussed.
一种新的无标记比色策略被报道,用于通过使用金纳米棒(GNRs)的减速蚀刻来灵敏检测铜离子(Cu(2+))。H2O2 被用作 GNRs 腐蚀的氧化剂,导致 GNRs 的纵横比降低。在没有 Cu(2+)的情况下,H2O2 对 GNRs 的氧化还原腐蚀迅速发生,导致 GNRs 的颜色从蓝绿色变为紫红色发生明显变化。由于 Cu(2+)对 H2O2 的分解具有强烈且特异性的催化作用,因此氧化还原腐蚀的速度可以减缓。评估了相关实验参数,包括 pH 值、NaSCN 和 H2O2 的浓度、孵育温度和时间。在最佳条件下,我们的方法对 Cu(2+)给出了 10-300 nM 的良好线性范围(R = 0.9985),并且肉眼检测的检测限低至 10 nM。因此,所提出的比色传感器简单、灵敏(4.96 nM)且选择性好,并已成功用于检测贝类样品中的 Cu(2+)。此外,还讨论了潜在的机制。