Electrochemical Determination of Fentanyl Using Carbon Nanofiber-Modified Electrodes

被引:4
|
作者
Marenco, Armando J. [1 ]
Pillai, Rajesh G. [1 ]
Harris, Kenneth D. [1 ,2 ]
Chan, Nora W. C. [3 ]
Jemere, Abebaw B. [1 ,4 ]
机构
[1] Natl Res Council Canada, Nanotechnol Res Ctr, Edmonton, AB T6G 2M9, Canada
[2] Univ Alberta, Dept Mech Engn, Edmonton, AB T6G 1H9, Canada
[3] Def Res & Dev Canada, Suffield Res Ctr, Medicine Hat, AB T1A 8K6, Canada
[4] Queens Univ, Dept Chem, Kingston, ON K7L 3N6, Canada
来源
ACS OMEGA | 2024年
关键词
PERFORMANCE LIQUID-CHROMATOGRAPHY; METABOLITES; ANALOGS; SENSOR; DRUG;
D O I
10.1021/acsomega.4c00816
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
In this work, we report the direct electrochemical oxidation of fentanyl using commercial screen-printed carbon electrodes (SPCEs) modified with carboxyl-functionalized carbon nanofibers (fCNFs). CNFs have surface chemistry and reactivity similar to carbon nanotubes (CNTs), yet they are easier to produce and are of a lower cost than CNTs. By monitoring the current produced during the electrochemical oxidation of fentanyl, variables such as fCNF loading, fentanyl accumulation time, electrolyte pH, and differential pulse voltammetry parameters were optimized. Under an optimized set of conditions, the fCNF/SPCEs responded linearly to fentanyl in the concentration range of 0.125-10 mu M, with a limit of detection of 75 nM. The fCNF/SPCEs also demonstrated excellent selectivity against common cutting agents found in illicit drugs (e.g., glucose, sucrose, caffeine, acetaminophen, and theophylline) and interferents found in biological samples (e.g., ascorbic acid, NaCl, urea, creatinine, and uric acid). The performance of the sensor was also successfully tested using fentanyl spiked into an artificial urine sample. The straightforward electrode assembly process, low cost, ease of use, and rapid response make the fCNF/SPCEs prime candidates for the detection of fentanyl in both physiological samples and street drugs.
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页数:10
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