Utilization of green analytical chemistry principles for the simultaneous estimation of paracetamol, aceclofenac and thiocolchicoside by UV spectrophotometry
The present paper describes multicomponent UV spectrophotometric method for the determination of paracetamol, aceclofenac, and thiocolchicoside based on the fundamentals of green analytical chemistry. Major pharmaceutical companies and research laboratories encompass on green analytical methodologie...
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Veröffentlicht in: | Green chemistry letters and reviews 2021-01, Vol.14 (1), p.99-107 |
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description | The present paper describes multicomponent UV spectrophotometric method for the determination of paracetamol, aceclofenac, and thiocolchicoside based on the fundamentals of green analytical chemistry. Major pharmaceutical companies and research laboratories encompass on green analytical methodologies for developing environmental friendly analytical methods. The present work is based on the principle of simultaneous equation involving additive of absorbances at the selected wavelengths. The linear range was established between 5-15 µg/mL for paracetamol, 1-5 µg/mL for aceclofenac, and 1-5 µg/mL thiocolchicoside. The greenness profile of the developed UV spectrophotometric technique was evaluated using National Environmental Methods Index, Analytical Eco-scale and AGREE metrics which proved the greenness of the method with respect to solvent, chemicals, energy consumed, and waste produced. The proposed method being simple, economical, and eco-friendly could be convenient substitutes for the use of hazardous chemicals in the routine investigation of the selected triple drug combination. |
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S. ; Lakshmi, K. S.</creator><creatorcontrib>Kokilambigai, K. S. ; Lakshmi, K. S.</creatorcontrib><description>The present paper describes multicomponent UV spectrophotometric method for the determination of paracetamol, aceclofenac, and thiocolchicoside based on the fundamentals of green analytical chemistry. Major pharmaceutical companies and research laboratories encompass on green analytical methodologies for developing environmental friendly analytical methods. The present work is based on the principle of simultaneous equation involving additive of absorbances at the selected wavelengths. The linear range was established between 5-15 µg/mL for paracetamol, 1-5 µg/mL for aceclofenac, and 1-5 µg/mL thiocolchicoside. The greenness profile of the developed UV spectrophotometric technique was evaluated using National Environmental Methods Index, Analytical Eco-scale and AGREE metrics which proved the greenness of the method with respect to solvent, chemicals, energy consumed, and waste produced. The proposed method being simple, economical, and eco-friendly could be convenient substitutes for the use of hazardous chemicals in the routine investigation of the selected triple drug combination.</description><identifier>ISSN: 1751-8253</identifier><identifier>EISSN: 1751-7192</identifier><identifier>DOI: 10.1080/17518253.2020.1862311</identifier><language>eng</language><publisher>Abingdon: Taylor & Francis</publisher><subject>AGREE metrics ; Analgesics ; Analytical chemistry ; Analytical eco scale ; Analytical methods ; Chemicals ; Green analytical chemistry ; Laboratories ; Mathematical analysis ; National Environmental Methods Index ; Paracetamol ; Simultaneous equations ; Spectrophotometry ; UV simultaneous equation method ; Wavelengths</subject><ispartof>Green chemistry letters and reviews, 2021-01, Vol.14 (1), p.99-107</ispartof><rights>2020 The Author(s). Published by Informa UK Limited, trading as Taylor & Francis Group 2020</rights><rights>2020 The Author(s). 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subjects | AGREE metrics Analgesics Analytical chemistry Analytical eco scale Analytical methods Chemicals Green analytical chemistry Laboratories Mathematical analysis National Environmental Methods Index Paracetamol Simultaneous equations Spectrophotometry UV simultaneous equation method Wavelengths |
title | Utilization of green analytical chemistry principles for the simultaneous estimation of paracetamol, aceclofenac and thiocolchicoside by UV spectrophotometry |
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