Issue 65, 2019, Issue in Progress

A naphthoquinone based colorimetric probe for real-time naked eye detection of biologically important anions including cyanide ions in tap water: experimental and theoretical studies

Abstract

A naphthoquinone based colorimetric sensor (N) bearing hydrazone receptors in aqueous media was developed and its recognition properties towards biologically important anions in DMSO–water mixture (9 : 1) were investigated using spectroscopic methods. The hydrazone based receptors showed selectivity towards anions (F, OH, CN and AcO), through naked eye observable colour changes, from green to light blue (F, CN and AcO) and violet (OH). The colour changes were concomitant with spectral changes. The sensor could also detect the presence of fluoride ions in commercially available toothpastes, through remarkable colour and spectral changes. In addition, test paper strips prepared from N were able to detect the presence of cyanide (KCN) and hydroxide (NaOH) in tap water. The study was complimented by density functional theory computations to have more insight in the interaction between N and the anions.

Graphical abstract: A naphthoquinone based colorimetric probe for real-time naked eye detection of biologically important anions including cyanide ions in tap water: experimental and theoretical studies

Article information

Article type
Paper
Submitted
06 Aug 2019
Accepted
14 Nov 2019
First published
21 Nov 2019
This article is Open Access
Creative Commons BY-NC license

RSC Adv., 2019,9, 37926-37938

A naphthoquinone based colorimetric probe for real-time naked eye detection of biologically important anions including cyanide ions in tap water: experimental and theoretical studies

J. Naimhwaka and V. Uahengo, RSC Adv., 2019, 9, 37926 DOI: 10.1039/C9RA06116A

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