Stopped Flow Kinetics of MnII Catalysed Periodate Oxidation of 2, 3- dimethylaniline - Evaluation of Stability Constant of the Ternary Intermediate Complex

Kaushik, Rajneesh Dutt and Agarwal, Richa and Tyagi, Priyanka and Singh, Om and Singh, Jaspal (2015) Stopped Flow Kinetics of MnII Catalysed Periodate Oxidation of 2, 3- dimethylaniline - Evaluation of Stability Constant of the Ternary Intermediate Complex. Bulletin of Chemical Reaction Engineering & Catalysis, 10 (1). pp. 78-87. ISSN 1978-2993

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Official URL: http://dx.doi.org/10.9767/bcrec.10.1.7621.78-87

Abstract

The formation of ternary intermediate unstable complex during the oxidation of aromatic amines by periodate ion catalysed by MnII has been proposed in case of some anilines. This paper is the first report on stopped-flow kinetic study and evaluation of stability constant of ternary complex forming in the MnII - catalysed periodate oxidation of 2, 3-dimethylaniline (D) in acetone-water medium. Stop-flow spectrophotometric method was used to study the ternary complex formation and to determine its stability constant. The stop-flow trace shows the reaction to occur in two steps. The first step, which is presumably the formation of ternary complex, is relatively fast while the second stage is relatively quite slow. The stability constant evaluated for D - MnII - IO4- ternary complex by determining equilibrium absorbance is (2.2 ± 1.0) × 105. Kinetics of ternary complex formation was defined by the rate law(A) under pseudo first order conditions. ln{[C2]eq / ( [C2]eq -[C2])} = kobs . t (A) where, kobs is the pseudo first order rate constant, [C2] is concentration of ternary complex at given time t, and [C2]eq is the equilibrium concentration of ternary complex. © 2015 BCREC UNDIP. All rights reserved

Item Type:Article
Uncontrolled Keywords:Stopped flow kinetics; Stability constant; Ternary complex; MnII catalysed; Periodate oxidation; 2, 3- dimethylaniline
Subjects:T Technology > TP Chemical technology
Q Science > QD Chemistry
Divisions:UNDIP Journal > Bulletin of Chemical Reaction Engineering and Catalysis
ID Code:45207
Deposited By:Dr. Istadi Istadi
Deposited On:03 Mar 2015 14:28
Last Modified:03 Mar 2015 14:28

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