## Abstract An evaluation of the results obtained by the extended kinetic method for a series of representative bases is presented here. Analysis of the original experimental data is conducted using the orthogonal distance regression (ODR) statistical treatment. A comparison with the proton affinit
Obtaining thermochemical data by the extended kinetic method
β Scribed by Guy Bouchoux; Michel Sablier; Florence Berruyer-Penaud
- Publisher
- John Wiley and Sons
- Year
- 2004
- Tongue
- English
- Weight
- 246 KB
- Volume
- 39
- Category
- Article
- ISSN
- 1076-5174
- DOI
- 10.1002/jms.680
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β¦ Synopsis
Abstract
A microcanonical analysis of the extended kinetic method is performed using statistical rate calculations based on orbiting transition state theory. The model systems simulate polydentate bases M which exhibit losses of entropy upon protonation of up to 35 kJ mol^β1^ K^β1^. It is shown that the correlations using the natural logarithm of the ratio of rate constants vs the proton affinity of the reference bases, at several effective temperatures, lead to correct proton affinity and protonation entropy of the base M of interest. A systematic underestimate of the latter quantity (by 5β15%), mainly due to the use of a linear rather than a polynomial curve fitting procedure, is noted, however. When considering experimental data, more severe underestimates are observed for the protonation entropies of polydentate bases (by 50β90%). The origins of these considerable discrepancies are beyond the limits of the present modeling and remain to be determined. Copyright Β© 2004 John Wiley & Sons, Ltd.
π SIMILAR VOLUMES
This critical examination of the kinetic method is carried out as part of a dialog-in-print with Peter Armentrout and La szlo Drahos and Ka roly Ve key. We summarise the characteristics of the kinetic method and try to place it in the context of other thermokinetic methods of making thermochemical d