Abstract

Solid-contact ion-selective electrodes (SC-ISEs) have shown great potential for routine and portable ion detection. The introduction of nanomaterials as ion-to-electron transducers and the adoption of different performance-enhancement strategies have significantly promoted the development of SC-ISEs. Herein, new solid-contact ion-selective electrodes, along with the implementation of multiwalled carbon nanotubes (MWCNTs) as ion-to-electron transducers and potassium tetrakis (p-chlorophenyl) borate (KTpClB) as lipophilic ionic additives, were presented for the detection of isoproturon (IPU) and diuron (DU) herbicides. Molecularly imprinted polymers (MIPs), with special molecule recognition properties for isoproturon (IPU) and diuron (DU), were prepared, characterized, and introduced as sensory recognition materials in the presented electrodes. Sensors revealed a near-Nernstian response for both isoproturon (IPU) and diuron (DU) with slopes of 53.1 ± 1.2 (r2 = 0.997) and 57.2 ± 0.3 (r2 = 0.998) over the linear ranges of 2.2 × 10−6–1.0 × 10−3 M and 3.2 × 10−6–1.0 × 10−3 M with detection limits of 8.3 × 10−7 and 1.4 × 10−6 M, respectively. The response time of the presented sensors was found to be <5 s and the lifetime was at least eight weeks. The sensors exhibited good selectivity towards isoproturon (IPU) and diuron (DU) in comparison with some other herbicides, alkali, alkaline earth, and heavy metal ions. The presented sensors were successfully applied for the direct determination of isoproturon (IPU) and diuron (DU) in real water samples.

Highlights

  • Herbicides account for about 50% of agrochemical demand

  • Phenylurea herbicides are selective herbicides that are commonly used in agriculture, either alone or in combination with other pesticides, to treat soil before emergence

  • We describe, for the first time, sensitive potentiometric sensors for the determination of isoproturon and diuron herbicides

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Summary

Introduction

Herbicides account for about 50% of agrochemical demand The danger of these chemicals lies in their prolonged use and the risks of their presence in crops and soil. Phenylurea herbicides are selective herbicides that are commonly used in agriculture, either alone or in combination with other pesticides, to treat soil before emergence. Due to their polar nature, potential leakage from the surface into water supplies and water reserves, together with the emergence of the potentially toxic degradation and metabolic products, poses a risk to human health [2,3].

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