Literature DB >> 33190709

A non-enzymatic electrochemical biosensor for the detection of formalin levels in fishes: Realization of a novel comparator effect based on electrolyte.

Priyannth Ramasami Sundhar Baabu1, Parthasarathy Srinivasan2, Arockia Jayalatha Kulandaisamy2, Jeyashakila Robinson3, Jeyasekaran Geevaretnam4, John Bosco Balaguru Rayappan5.   

Abstract

Formalin has been used as the preservative of fishes in the concentration range of 15-25 mgL-1. However, there have been a high frequency of violations in the optimum use of formalin levels. The consumption of fishes treated with excessive formalin levels leads to nasopharynx, leukaemia and sinonasal cancer and there is a huge demand for the development of formalin sensor. Conventional formalin sensors such as chromogenic and mass balance sensors fall short in real-time analysis due to the lack of specificity and sensitivity in the interference medium. In this context, it has been emphasized to develop a non-enzymatic electrochemical biosensor with microwave synthesized CdS nanoparticles as a nanointerface owing to its surface limited kinetics. NaCl of 1 mM was considered as an electrolyte solution in the present study. Dynamic sensing characteristics with varying formalin levels of 5-50 mgL-1 was studied in three different concentration ranges as 5-15 mgL-1 (concentration of formalin < NaCl; conversion of formalin to formic acid), 20-30 mgL-1 (concentration of formalin ∼ NaCl; equilibrium between the oxidative and reductive product), 35-50 mgL-1 (concentration of formalin > NaCl; complete oxidation of formic acid to CO2). Hence, with the exhibition of such a dynamic sensitivity based on electrolyte, the developed biosensor acts as an electrochemical comparator showcasing a switch-like behaviour in detecting formalin levels. The threshold concentration of formalin required for the comparator effect was found to be 14.845 mgL-1. The developed biosensor, most essentially, exhibited a versatility in quantifying formalin levels in real-time fish samples.
Copyright © 2020 Elsevier B.V. All rights reserved.

Entities:  

Keywords:  CdS nanoparticles; Comparator effect; Dynamic sensitivity; Electrochemical biosensor; Formalin

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Year:  2020        PMID: 33190709     DOI: 10.1016/j.aca.2020.09.035

Source DB:  PubMed          Journal:  Anal Chim Acta        ISSN: 0003-2670            Impact factor:   6.558


  1 in total

1.  Flow Injection Amperometric Measurement of Formalin in Seafood.

Authors:  Kamonchanok Torrarit; Supatinee Kongkaew; Kritsada Samoson; Proespichaya Kanatharana; Panote Thavarungkul; Kah Haw Chang; Ahmad Fahmi Lim Abdullah; Warakorn Limbut
Journal:  ACS Omega       Date:  2022-05-18
  1 in total

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