Catalytic and kinetic spectrophotometric method for determination of vanadium(V) by 2,3,4-trihydroxyacetophenonephenylhydrazone

A new catalytic and kinetic spectrophotometric method for the determination of vanadium(V) was studied using 2,3,4-trihydroxyacetophenonephenylhydrazone (THAPPH) as an analytical reagent. The present method was developed on the catalytic effect of vanadium on oxidation of THAPPH by hydrogen peroxide...

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Main Authors: P.V. Chalapathi, B. Prathima, Y. Subba Rao, G.N. Ramesh, A. Varada Reddy
Format: Article
Language:English
Published: Elsevier 2014-12-01
Series:Journal of Saudi Chemical Society
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S1319610311002328
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spelling doaj-1153a8fbe5094bdcaa8be2b399c8b1c12020-11-25T00:00:48ZengElsevierJournal of Saudi Chemical Society1319-61032014-12-0118688289210.1016/j.jscs.2011.11.007Catalytic and kinetic spectrophotometric method for determination of vanadium(V) by 2,3,4-trihydroxyacetophenonephenylhydrazoneP.V. Chalapathi0B. Prathima1Y. Subba Rao2G.N. Ramesh3A. Varada Reddy4Department of Chemistry, Sri Venkateswara Arts College (TTD), Tirupathi 517501, Andhra Pradesh, IndiaDepartment of Chemistry, Sri Venkateswara University, Tirupathi 517502, Andhra Pradesh, IndiaDST-PURSE Centre, Sri Venkateswara University, Tirupathi 517502, Andhra Pradesh, IndiaDepartment of Chemistry, Sri Venkateswara University, Tirupathi 517502, Andhra Pradesh, IndiaDepartment of Chemistry, Sri Venkateswara University, Tirupathi 517502, Andhra Pradesh, IndiaA new catalytic and kinetic spectrophotometric method for the determination of vanadium(V) was studied using 2,3,4-trihydroxyacetophenonephenylhydrazone (THAPPH) as an analytical reagent. The present method was developed on the catalytic effect of vanadium on oxidation of THAPPH by hydrogen peroxide in hydrochloric acid–potassium chloride buffer (pH = 2.8) at the 20th minute. The metal ion has formed 1:2 (M:L) complex with THAPPH. Beer’s law was obeyed in the range 20–120 ng/mL of V(V) at λmax 390 nm. The sensitivity of the method was calculated in terms of molar absorptivity (1.999 × 105 L mol−1cm−1) and Sandell’s sensitivity (0.000254 μg cm−2), shows that this method is more sensitive. The standard deviation (0.0022), relative standard deviation (0.56%), confidence limit (±0.0015) and standard error (0.0007) revealed that the developed method has more precision and accuracy. The stability constant was calculated with the help of Asmu’s (9.411 × 10−11) and Edmond’s & Birnbaum’s (9.504 × 10−11) methods at room temperature. The interfering effect of various cations and anions was also studied. The present method was successfully applied for the determination of vanadium(V) in environmental and alloy samples. The method’s validity was checked by comparing the results obtained with atomic-absorption spectrophotometry and also by evaluation of results using F-test.http://www.sciencedirect.com/science/article/pii/S13196103110023282,3,4-trihydroxyacetophenonephenylhydrazoneKinetic spectrophotometryVanadium(V)Environmental and alloy samples
collection DOAJ
language English
format Article
sources DOAJ
author P.V. Chalapathi
B. Prathima
Y. Subba Rao
G.N. Ramesh
A. Varada Reddy
spellingShingle P.V. Chalapathi
B. Prathima
Y. Subba Rao
G.N. Ramesh
A. Varada Reddy
Catalytic and kinetic spectrophotometric method for determination of vanadium(V) by 2,3,4-trihydroxyacetophenonephenylhydrazone
Journal of Saudi Chemical Society
2,3,4-trihydroxyacetophenonephenylhydrazone
Kinetic spectrophotometry
Vanadium(V)
Environmental and alloy samples
author_facet P.V. Chalapathi
B. Prathima
Y. Subba Rao
G.N. Ramesh
A. Varada Reddy
author_sort P.V. Chalapathi
title Catalytic and kinetic spectrophotometric method for determination of vanadium(V) by 2,3,4-trihydroxyacetophenonephenylhydrazone
title_short Catalytic and kinetic spectrophotometric method for determination of vanadium(V) by 2,3,4-trihydroxyacetophenonephenylhydrazone
title_full Catalytic and kinetic spectrophotometric method for determination of vanadium(V) by 2,3,4-trihydroxyacetophenonephenylhydrazone
title_fullStr Catalytic and kinetic spectrophotometric method for determination of vanadium(V) by 2,3,4-trihydroxyacetophenonephenylhydrazone
title_full_unstemmed Catalytic and kinetic spectrophotometric method for determination of vanadium(V) by 2,3,4-trihydroxyacetophenonephenylhydrazone
title_sort catalytic and kinetic spectrophotometric method for determination of vanadium(v) by 2,3,4-trihydroxyacetophenonephenylhydrazone
publisher Elsevier
series Journal of Saudi Chemical Society
issn 1319-6103
publishDate 2014-12-01
description A new catalytic and kinetic spectrophotometric method for the determination of vanadium(V) was studied using 2,3,4-trihydroxyacetophenonephenylhydrazone (THAPPH) as an analytical reagent. The present method was developed on the catalytic effect of vanadium on oxidation of THAPPH by hydrogen peroxide in hydrochloric acid–potassium chloride buffer (pH = 2.8) at the 20th minute. The metal ion has formed 1:2 (M:L) complex with THAPPH. Beer’s law was obeyed in the range 20–120 ng/mL of V(V) at λmax 390 nm. The sensitivity of the method was calculated in terms of molar absorptivity (1.999 × 105 L mol−1cm−1) and Sandell’s sensitivity (0.000254 μg cm−2), shows that this method is more sensitive. The standard deviation (0.0022), relative standard deviation (0.56%), confidence limit (±0.0015) and standard error (0.0007) revealed that the developed method has more precision and accuracy. The stability constant was calculated with the help of Asmu’s (9.411 × 10−11) and Edmond’s & Birnbaum’s (9.504 × 10−11) methods at room temperature. The interfering effect of various cations and anions was also studied. The present method was successfully applied for the determination of vanadium(V) in environmental and alloy samples. The method’s validity was checked by comparing the results obtained with atomic-absorption spectrophotometry and also by evaluation of results using F-test.
topic 2,3,4-trihydroxyacetophenonephenylhydrazone
Kinetic spectrophotometry
Vanadium(V)
Environmental and alloy samples
url http://www.sciencedirect.com/science/article/pii/S1319610311002328
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