Litcius/Paper detail

Hydrothermal-Dependent Synthesis of Exfoliated Nickel Cobaltite Layers for Simultaneous Determination of IARC Group 2B, 3B Carcinogens

Xavier Benadict Joseph, Sakthivel Kogularasu, Sea‐Fue Wang, Jinn‐Kong Sheu

2021ACS Applied Nano Materials21 citationsDOI

Abstract

This article describes a more accurate, reliable, and responsive electrochemical sensor for the specific analysis of major isomers of dihydroxybenzene at binary metal oxide, nickel cobaltite (NiCo2O4) nanosheets. In this sustainable synthesis, we report the obtention of NiCo2O4 (NCO) sheets prepared through the temperature-controlled hydrothermal route which yields NCO I (stacked sheets), NCO II (multilayered sheets), and NCO III (thin sheets). Then, the structural, morphological, and chemical properties were analyzed via, microscopic, diffractive, spectral studies, while the electrocatalytic activity was examined through voltammetric analysis. The electronic structure gained via hydrothermal treatment and analytical findings reveals the appropriate band position of the produced NCO sheets to be used in electrocatalytical methods. Hence, the designed sensor was evaluated to sense the major isomers of dihydroxybenzene, which pollutes the aquatic ecosystems. Therefore, for results the hydrothermally prepared NCO sheets through the temperature-controlled hydrothermal route were employed to sense the isomers of dihydroxybenzene specifically in real-time.

Topics & Concepts

CobaltiteHydrothermal circulationNickelMaterials scienceOxideChemical engineeringHydrothermal synthesisMetalElectrochemistryChemistryMetallurgyPhysical chemistryElectrodeEngineeringElectrochemical sensors and biosensorsElectrochemical Analysis and ApplicationsAdvanced Chemical Sensor Technologies