2012The Open Analytical Chemistry JournalOpen access

Extractive Spectrophotometric Determination of Niobium (V) Using 3- Hydroxy-2-(4'-Methoxyphenyl)-4-Oxo-4H-l-Benzopyran as a Complexing Agent

Nivedita Agnihotri

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Abstract

3-Hydroxy-2-(4'-methoxyphenyl)-4-oxo-4H-l-benzopyran (HMPB) forms a yellow colored (1:3) complex with niobium (V), which is extracted into dichloromethane from 1.04-4.40molL -1 HClO 4 solution showing an absorption maximum at 398 -412 nm (figure curve A: 1.0 μg Nb ml -1 versus blank; curve B: blank versus DCM) with Beer's law range of 0-1.3 μg Nb ml -1 , molar absorptivity of 3.764 10 4 L mol -1 cm -1 and the detection limit as 0.036 μg ml -1 .The results are highly reproducible with a standard deviation of ± 0.0037.The linear regression equation is Y=0.399X + 0.006 and the correlation coefficient, r = 1.0004The method is free from the interference of a large number of analytically important elements.The proposed method handles satisfactorily the analysis of several samples of varying complexity.

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3-Hydroxy-2-(4'-methoxyphenyl)-4-oxo-4H-l-benzopyran (HMPB) forms a yellow colored (1:3) complex with niobium (V), which is extracted into dichloromethane from 1.04-4.40molL -1 HClO 4 solution showing an absorption maximum at 398 -412 nm (figure curve A: 1.0 μg Nb ml -1 versus blank; curve B: blank versus DCM) with Beer's law range of 0-1.3 μg Nb ml -1 , molar absorptivity of 3.764 10 4 L mol -1 cm -1 and the detection limit as 0.036 μg ml -1 .The results are highly reproducible with a standard deviation of ± 0.0037.The linear regression equation is Y=0.399X + 0.006 and the correlation coefficient, r = 1.0004The method is free from the interference of a large number of analytically important elements.The proposed method handles satisfactorily the analysis of several samples of varying complexity.

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Available abstract

3-Hydroxy-2-(4'-methoxyphenyl)-4-oxo-4H-l-benzopyran (HMPB) forms a yellow colored (1:3) complex with niobium (V), which is extracted into dichloromethane from 1.04-4.40molL -1 HClO 4 solution showing an absorption maximum at 398 -412 nm (figure curve A: 1.0 μg Nb ml -1 versus blank; curve B: blank versus DCM) with Beer's law range of 0-1.3 μg Nb ml -1 , molar absorptivity of 3.764 10 4 L mol -1 cm -1 and the detection limit as 0.036 μg ml -1 .The results are highly reproducible with a standard deviation of ± 0.0037.The linear regression equation is Y=0.399X + 0.006 and the correlation coefficient, r = 1.0004The method is free from the interference of a large number of analytically important elements.The proposed method handles satisfactorily the analysis of several samples of varying complexity.

Key concepts: Molar absorptivity, Niobium, Blank, Chemistry, Detection limit, Analytical Chemistry (journal), Linear regression, Standard curve

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Extractive Spectrophotometric Determination of Niobium (V) Using 3- Hydroxy-2-(4'-Methoxyphenyl)-4-Oxo-4H-l-Benzopyran as a Complexing Agent — Research Paper | ScholarLens