Abstract
A renewable electrochemical aptasensor was proposed for super-sensitive determination of Hg 2+ . The novel aptasensor, based on sulfur-nitrogen codoped ordered mesoporous carbon (SN-OMC) and thymine-Hg 2+ -thymine (T-Hg 2+ -T) mismatch structure, used ferrocene as signal molecules to achieve the conversion of current signals. In the absence of Hg 2+ , the thiol-modified T-rich probe 1 spontaneously formed a hairpin structure by base pairing. After being hybridized with the ferrocene-labeled probe 2 in the presence of Hg 2+ , the hairpin structure of probe 1 was opened due to the preferential formation of the T-Hg 2+ -T mismatch structure, and the ferrocene signal molecules approached the modified electrode surface. SN-OMC with high specific surface area and ample active sites acted as a signal amplification element in electrochemical sensing. The sensitive determination of Hg 2+ can be actualized by analyzing the relationship between the change of oxidation current caused by ferrocene signal molecules and the Hg 2+ concentrations. The aptasensor had a fine linear correlation in the range of 0.001-1000 nM with a detection limit of 0.45 pM. The aptasensor also displayed a good response in real sample detection and provided a promising possibility for in situ detection.
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Lai, C., Liu, S., Zhang, C., Zeng, G., Huang, D., Qin, L., … Hu, T. (2018). Electrochemical Aptasensor Based on Sulfur-Nitrogen Codoped Ordered Mesoporous Carbon and Thymine-Hg 2+ -Thymine Mismatch Structure for Hg 2+ Detection. ACS Sensors, 3(12), 2566–2573. https://doi.org/10.1021/acssensors.8b00926
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