4.6 Article

Molecularly Imprinted Polymer Modified with an MWCNT Nanocomposite for the Fabrication of a Barbital Solid-Contact Ion- Selective Electrode

Journal

ACS OMEGA
Volume -, Issue -, Pages -

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acsomega.2c02250

Keywords

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Funding

  1. Deanship of Scientific Research at King Khalid University [RGP.2/183/43]

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A micro-sized imprinted polymer/multiwalled carbon nanotube-based sensor is developed for potentiometric sensing of barbital. The sensor exhibits high selectivity and sensitivity for the detection of barbital in real samples.
For potentiometric sensing of barbital (BAR), unique micro-sized imprinted polymer/multiwalled carbon nanotube (MWCNT)-based sensors are introduced. MWCNT is a lipophilic ion to-electron transducing substance. A synthetic, described, and integrated barbital sodium molecular imprinted polymer (MIP) was used as a recognition receptor for potentiometric transduction in a plasticized polyvinyl chloride membrane. Methacrylic acid and ethylene glycol dimethacrylic acid are used as the functional monomer and crosslinking agent, respectively, in the synthesis of the MIPs. In the operating concentration range of 1.0 X 10(-3) to 2.0 X 10(-7) M, the sensors' Nernstian slope was -56.8 +/- 0.9 mV/decade, with a detection limit of 1.0 X 10(-7) M. The sensor displayed an accurate response time of 10 s and consistent potential response in the pH range of 8.5 -11. Using chronopotentiometry tests, the interfacial capacitance of the presented ion-to-electron transducer was assessed. When compared to sensors without MWCNTs, the interfacial double-layer capacitance for sensors based on those layers reached 52.5 mu F. After the addition of the MWCNTs nanocomposite layer, the water layer was eliminated between the sensing membrane and the conducting substrate. A wide range of applications for the proposed sensors for BAR detection in real samples can be provided by the sensors' strong selectivity over the interfering species. The suggested sensors were successfully used to determine BAR in urine samples that had been spiked.

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