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Boreskov Institute of Catalysis of the Siberian Branch of Russian ...

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PP-I-15[EEAA] t , M[EEAA] t –1 , M –1t, min t, minFigure 1. The kinetic curve <strong>of</strong> <strong>the</strong> reactionEEAA+AA+KOH+TMCAC at 293 K.[EEAA] 0 =[AA] 0Figure 2. The anamorphosis <strong>of</strong> <strong>the</strong> kinetic lawin coordinates [EEAA] t–1÷ t (min)The analysis <strong>of</strong> kinetic data showed that <strong>the</strong> all considered reactions are bimolecular andfirst order with respect to each reagent: EEAA and ei<strong>the</strong>r AA or MAA.d [ EEAA]− = k [ EEAA][ AA]( or [ MAA])(1)dtIn <strong>the</strong> case when [EEAA] 0 =[AA] 0 (or [MAA] 0 ), as was our (1) may be expressed by <strong>the</strong>following rate law:which solution is:d [ EEAA ]dt222− = k [ EEAA ] = k [ AA] = k [ MAA](2)−1−10[ EEAA ]t− [ EEAA ] = kt(3)It must be noticed that <strong>the</strong> R was determined by means <strong>of</strong> remained (unreacted) EEAAanalysis.So from <strong>the</strong> obtained experimental data it follows that <strong>the</strong> use <strong>of</strong> IPTC method opens newperspectives to enlarge <strong>the</strong> possibilities to syn<strong>the</strong>size lots <strong>of</strong> polyfunctional compounds bymeans <strong>of</strong> condensation <strong>of</strong> α,β-unsaturated amids with C-H acids.References1. G. Torosyan, A. Harutyunyan, L. Isakova, N. Beylerian, J. Chobanyan, S. Simonyan, Oxid.Commun., 30,No 3, 548-552 /2007/.240

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