College of Food Science and Engineering, Northwest A&F University, Yangling 712100, Shaanxi China.
Qinghai Key Laboratory of Qinghai-Tibet Plateau Biological Resources, Northwest Institute of Plateau Biology, Chinese Academy of Sciences, Xining 810008, Qinghai China.
Environ Sci Technol. 2023 Sep 12;57(36):13397-13407. doi: 10.1021/acs.est.3c04469. Epub 2023 Aug 29.
Colorimetric analysis for mercury detection has great application potential in the prevention of health damage caused by mercury in the environment. Sensitivity, selectivity, and portability are core competencies of sensors, and concentrating these properties in a single sensor for efficient mercury detection remains a great challenge. Herein, a hollow structure CuS@CuSe@PVP (CCP) was prepared in which the enzyme-like activities could be activated by Hg due to the antagonism between Hg and Se, inspiring the establishment of a colorimetric method for Hg detection. As for Hg detection performance, the linear range (LR) and limit of detection (LOD) were 1-900 and 0.81 nM in the POD-like activity system, respectively. Also, 5-550 nM of LR and 2.34 nM of LOD were achieved in the OD-like activity system. Further, a smartphone-mediated portable RGB nanosensor was fabricated, with a LOD down to 6.65 nM in the POD-like system and 7.97 nM in the OD-like system. Moreover, the excellent self-calibration and satisfactory recovery of 94.77%-106.16% were shown in the application of real water samples analysis. This study represented advanced progress toward emerging applications of nanozymes with multiple enzyme-like activities in heavy metal detection and will accelerate the development of efficient and portable heavy metal sensors.
用于汞检测的比色分析在预防环境汞对健康造成的损害方面具有巨大的应用潜力。灵敏度、选择性和便携性是传感器的核心竞争力,而将这些特性集中在单个传感器中以实现高效的汞检测仍然是一个巨大的挑战。在此,制备了一种具有酶样活性的空心结构 CuS@CuSe@PVP(CCP),由于 Hg 与 Se 的拮抗作用,Hg 可以激活酶样活性,激发了用于 Hg 检测的比色方法的建立。对于 Hg 检测性能,在过氧化物酶样活性体系中,LR 和 LOD 分别为 1-900 和 0.81 nM。此外,在 OD 样活性体系中,LR 为 5-550 nM,LOD 为 2.34 nM。进一步,制备了一种基于智能手机的便携式 RGB 纳米传感器,在过氧化物酶样体系中的 LOD 低至 6.65 nM,在 OD 样体系中的 LOD 低至 7.97 nM。此外,在实际水样分析的应用中,表现出优异的自校准和令人满意的 94.77%-106.16%的回收率。本研究代表了在利用具有多种酶样活性的纳米酶进行重金属检测方面的最新进展,并将加速高效、便携的重金属传感器的发展。