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Single Quality Factor for Enthalpy-Entropy Compensation, Isoequilibrium and Isokinetic Relationships.


ABSTRACT: Enthalpy-entropy compensation (EEC) is very often encountered in chemistry, biology and physics. Its origin is widely discussed since it would allow, for example, a very accurate tuning of the thermodynamic properties as a function of the reactants. However, EEC is often discarded as a statistical artefact, especially when only a limited temperature range is considered. We show that the likeliness of a statistical origin of an EEC can be established with a compensation quality factor (CQF) that depends only on the measured enthalpies and entropies and the experimental temperature range. This is directly derived from a comparison of the CQF with threshold values obtained from a large number of simulations with randomly generated Van 't Hoff plots. The value of CQF is furthermore a direct measure of the existence of a genuine isoequilibrium or isokinetic relationship.

SUBMITTER: Griessen R 

PROVIDER: S-EPMC7522686 | biostudies-literature | 2020 Jun

REPOSITORIES: biostudies-literature

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Single Quality Factor for Enthalpy-Entropy Compensation, Isoequilibrium and Isokinetic Relationships.

Griessen Ronald R   Boelsma Christiaan C   Schreuders Herman H   Broedersz Chase P CP   Gremaud Robin R   Dam Bernard B  

Chemphyschem : a European journal of chemical physics and physical chemistry 20200710 15


Enthalpy-entropy compensation (EEC) is very often encountered in chemistry, biology and physics. Its origin is widely discussed since it would allow, for example, a very accurate tuning of the thermodynamic properties as a function of the reactants. However, EEC is often discarded as a statistical artefact, especially when only a limited temperature range is considered. We show that the likeliness of a statistical origin of an EEC can be established with a compensation quality factor (CQF) that  ...[more]

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