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Colorimetric Determination of Hypochlorite Based on the Oxidative Leaching of Gold Nanorods

Hypochlorite plays a critical role in killing microorganisms in the water. However, it can also cause cardiovascular diseases, neuron degeneration, and cancer to humans. Although traditional methods feature excellent sensitivity and reliability in detecting hypochlorite, the expensive instruments an...

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Autores principales: Ma, Yurong, Zhu, Yingyi, Liu, Benzhi, Quan, Guixiang, Cui, Liqiang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6164613/
https://www.ncbi.nlm.nih.gov/pubmed/30200555
http://dx.doi.org/10.3390/ma11091629
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author Ma, Yurong
Zhu, Yingyi
Liu, Benzhi
Quan, Guixiang
Cui, Liqiang
author_facet Ma, Yurong
Zhu, Yingyi
Liu, Benzhi
Quan, Guixiang
Cui, Liqiang
author_sort Ma, Yurong
collection PubMed
description Hypochlorite plays a critical role in killing microorganisms in the water. However, it can also cause cardiovascular diseases, neuron degeneration, and cancer to humans. Although traditional methods feature excellent sensitivity and reliability in detecting hypochlorite, the expensive instruments and strict determination conditions have limited their application in environmental analysis to some extent. Thus, it is necessary and urgent to propose a cheap, facile, and quick analytical assay for hypochlorite. This paper proposes a colorimetric assay for hypochlorite utilizing gold nanorods (AuNRs) as the nanoreactor and color reader. The AuNRs were acquired via a reported seed-mediated method. NaClO with strong oxidation property can cause the etching of gold from the longitudinal tips of AuNRs, which could shorten the aspect ratio of AuNRs, decrease the absorption in the UV–Vis spectrum and also induce the solution color changing from red to pale yellow. Thus, according to the solution color change and the absorbance of longitudinal surface plasmon resonance of AuNRs, we established the calibration curve of NaClO within 0.08 μM to 125 μM (∆Abs = 0.0547 + 0.004 C(NaClO), R(2) = 0.9631). Compared to traditional method, we obtained the conversion formula between the concentration of residual-chlorine in tap water and the concentration of hypochlorite detected by the proposed colorimetric assay, which is C(residual-chlorine) = 0.24 C(NaClO). Finally, the real application of the colorimetric assay in tap water was successfully performed, and the accuracy of the colorimetric method can reach from −6.78% to +8.53%.
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spelling pubmed-61646132018-10-12 Colorimetric Determination of Hypochlorite Based on the Oxidative Leaching of Gold Nanorods Ma, Yurong Zhu, Yingyi Liu, Benzhi Quan, Guixiang Cui, Liqiang Materials (Basel) Article Hypochlorite plays a critical role in killing microorganisms in the water. However, it can also cause cardiovascular diseases, neuron degeneration, and cancer to humans. Although traditional methods feature excellent sensitivity and reliability in detecting hypochlorite, the expensive instruments and strict determination conditions have limited their application in environmental analysis to some extent. Thus, it is necessary and urgent to propose a cheap, facile, and quick analytical assay for hypochlorite. This paper proposes a colorimetric assay for hypochlorite utilizing gold nanorods (AuNRs) as the nanoreactor and color reader. The AuNRs were acquired via a reported seed-mediated method. NaClO with strong oxidation property can cause the etching of gold from the longitudinal tips of AuNRs, which could shorten the aspect ratio of AuNRs, decrease the absorption in the UV–Vis spectrum and also induce the solution color changing from red to pale yellow. Thus, according to the solution color change and the absorbance of longitudinal surface plasmon resonance of AuNRs, we established the calibration curve of NaClO within 0.08 μM to 125 μM (∆Abs = 0.0547 + 0.004 C(NaClO), R(2) = 0.9631). Compared to traditional method, we obtained the conversion formula between the concentration of residual-chlorine in tap water and the concentration of hypochlorite detected by the proposed colorimetric assay, which is C(residual-chlorine) = 0.24 C(NaClO). Finally, the real application of the colorimetric assay in tap water was successfully performed, and the accuracy of the colorimetric method can reach from −6.78% to +8.53%. MDPI 2018-09-06 /pmc/articles/PMC6164613/ /pubmed/30200555 http://dx.doi.org/10.3390/ma11091629 Text en © 2018 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Ma, Yurong
Zhu, Yingyi
Liu, Benzhi
Quan, Guixiang
Cui, Liqiang
Colorimetric Determination of Hypochlorite Based on the Oxidative Leaching of Gold Nanorods
title Colorimetric Determination of Hypochlorite Based on the Oxidative Leaching of Gold Nanorods
title_full Colorimetric Determination of Hypochlorite Based on the Oxidative Leaching of Gold Nanorods
title_fullStr Colorimetric Determination of Hypochlorite Based on the Oxidative Leaching of Gold Nanorods
title_full_unstemmed Colorimetric Determination of Hypochlorite Based on the Oxidative Leaching of Gold Nanorods
title_short Colorimetric Determination of Hypochlorite Based on the Oxidative Leaching of Gold Nanorods
title_sort colorimetric determination of hypochlorite based on the oxidative leaching of gold nanorods
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6164613/
https://www.ncbi.nlm.nih.gov/pubmed/30200555
http://dx.doi.org/10.3390/ma11091629
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