Oxidation of Chalcones by Morpholinium Chlorochromate with Oxalic Acid as Catalyst: Kinetic and Mechanistic Study
The kinetics of oxidation of chalcones by morpholinium chlorochromate (MCC) has been studied in 55% acetic acid-water (v/v) medium. The reaction showed unit order dependence each with respect to oxidant and catalyst and fractional order with respect to substrate and H+ ion. Increased ionic strength...
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2013-01-01
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Online Access: | http://dx.doi.org/10.1155/2013/240102 |
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doaj-9f82e531536044bd99d17b10b99c73d62020-11-24T23:02:12ZengHindawi LimitedJournal of Chemistry2090-90632090-90712013-01-01201310.1155/2013/240102240102Oxidation of Chalcones by Morpholinium Chlorochromate with Oxalic Acid as Catalyst: Kinetic and Mechanistic StudyK. Rajalakshmi0T. Ramachandramoorthy1Department of Chemistry, CARE School of Engineering, Tiruchirappalli 620 00, IndiaPG and Research Department of Chemistry, Bishop Heber College (Autonomous), Tiruchirappalli 620 017, IndiaThe kinetics of oxidation of chalcones by morpholinium chlorochromate (MCC) has been studied in 55% acetic acid-water (v/v) medium. The reaction showed unit order dependence each with respect to oxidant and catalyst and fractional order with respect to substrate and H+ ion. Increased ionic strength has no effect on the reaction rate. In the case of substituted chalcones, the order with respect to substrate varies depending upon the nature of the substituent present in the ring. In general, the electron withdrawing substituents retard the reaction rate while the electron releasing substituents enhance the rate of the reaction. From the kinetic data obtained, the activation parameters have been calculated and a suitable mechanism has been proposed.http://dx.doi.org/10.1155/2013/240102 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
K. Rajalakshmi T. Ramachandramoorthy |
spellingShingle |
K. Rajalakshmi T. Ramachandramoorthy Oxidation of Chalcones by Morpholinium Chlorochromate with Oxalic Acid as Catalyst: Kinetic and Mechanistic Study Journal of Chemistry |
author_facet |
K. Rajalakshmi T. Ramachandramoorthy |
author_sort |
K. Rajalakshmi |
title |
Oxidation of Chalcones by Morpholinium Chlorochromate with Oxalic Acid as Catalyst: Kinetic and Mechanistic Study |
title_short |
Oxidation of Chalcones by Morpholinium Chlorochromate with Oxalic Acid as Catalyst: Kinetic and Mechanistic Study |
title_full |
Oxidation of Chalcones by Morpholinium Chlorochromate with Oxalic Acid as Catalyst: Kinetic and Mechanistic Study |
title_fullStr |
Oxidation of Chalcones by Morpholinium Chlorochromate with Oxalic Acid as Catalyst: Kinetic and Mechanistic Study |
title_full_unstemmed |
Oxidation of Chalcones by Morpholinium Chlorochromate with Oxalic Acid as Catalyst: Kinetic and Mechanistic Study |
title_sort |
oxidation of chalcones by morpholinium chlorochromate with oxalic acid as catalyst: kinetic and mechanistic study |
publisher |
Hindawi Limited |
series |
Journal of Chemistry |
issn |
2090-9063 2090-9071 |
publishDate |
2013-01-01 |
description |
The kinetics of oxidation of chalcones by morpholinium chlorochromate (MCC) has been studied in 55% acetic acid-water (v/v) medium. The reaction showed unit order dependence each with respect to oxidant and catalyst and fractional order with respect to substrate and H+ ion. Increased ionic strength has no effect on the reaction rate. In the case of substituted chalcones, the order with respect to substrate varies depending upon the nature of the substituent present in the ring. In general, the electron withdrawing substituents retard the reaction rate while the electron releasing substituents enhance the rate of the reaction. From the kinetic data obtained, the activation parameters have been calculated and a suitable mechanism has been proposed. |
url |
http://dx.doi.org/10.1155/2013/240102 |
work_keys_str_mv |
AT krajalakshmi oxidationofchalconesbymorpholiniumchlorochromatewithoxalicacidascatalystkineticandmechanisticstudy AT tramachandramoorthy oxidationofchalconesbymorpholiniumchlorochromatewithoxalicacidascatalystkineticandmechanisticstudy |
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1725636868060479488 |