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Dual-signaling and ultrasensitive detection for PCT based on the photoelectric and electrocatalytic hydrogen evolution signals of Pt/Mo–CoFeS.

Authors :
Duolihong, Bawurejiang
Ma, Xiangdong
Liu, Rui
Yue, Shan
Xia, Xiaohong
Source :
Talanta. Jun2024, Vol. 273, pN.PAG-N.PAG. 1p.
Publication Year :
2024

Abstract

Few study has been carried out on the construction of immunesensors utilized the photoelectric and catalytic signal of nanomaterial. Here, a dual-signal electrochemical immunosensor was constructed for procalcitonin (PCT) detection based on the excellent photoelectric and hydrogen evolution performance of molybdenum-doped cobalt-iron sulfur nanosheets modified by platinum nanoparticles (Pt/Mo–CoFeS). Due to the electronic structure regulation between Pt and Mo–CoFeS, Pt/Mo–CoFeS exhibits superior photoelectric and hydrogen evolution performance compared to single Mo–CoFeS, which improved the sensitivity of the electrochemical immunosensor. Furthermore, the presence of Pt improves surface area and biocompatibility, achieving more antibodies loading and signal amplification. The linear range of PCT detection are 0.002–20 ng mL−1 and 0.002–50 ng mL−1, the detection limits are 0.0015 and 0.0012 ng mL−1. In addition, this electrochemical immunosensor was applied to the PCT analysis in human serum samples with high recoveries. F-test and t -test show that there is no significant difference in the test results between the HER and photoelectric signals, the mutual verification between above two signals can effectively improve the accuracy of detection result. Bifunctional catalyst Pt/Mo–CoFeS for water electrolysis and photoelectric conversion was prepared and used as a signal marker to construct a dual-signal electrochemical immunosensor for procalcitonin detection. Results show that this dual-signal electrochemical immunosensor with wide detection linear range (0.002–50 ng mL−1) and low detection limits (HER signal: 0.0015 ng mL−1 and photoelectric signal: 0.0012 ng mL−1), and the mutual verification between above two signals can effectively improve the accuracy of detection result. [Display omitted] • Dual-signal electrochemical immunosensor was constructed based on Pt/Mo–CoFeS. • The electronic regulation between Pt and Mo–CoFeS improve its HER and photoelectric performance. • PCT detection based on the immunosensor with wide linear range and low detection limit. • F-test and t -test show that there is no significant difference in these two test results. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00399140
Volume :
273
Database :
Academic Search Index
Journal :
Talanta
Publication Type :
Academic Journal
Accession number :
176467430
Full Text :
https://doi.org/10.1016/j.talanta.2024.125945