Abstract

It has been shown by mathematical transformations that the final equations and expressions required for determining equilibrium concentrations of major species in HA + B systems are analogous to those used previously for HA + A−1 systems. Heteroconjugation constants AHB = [AHB]/([HA][B]) for eight substituted phenol (HA)–piperidine (B) systems in acetonitrile (AN) were determined from emf measurements. A fairly linear dependence between log AHB and ΔpKaAN = pKANBH+ − pKHAAN was observed with a slope of 0.52. The [K2AHB/(KAHA−KBHB+)]at ΔpKa = 0 quotient appeared to be much greater than [K2AHA1−/(KAHA−KA1HA1−)]at ΔpKa = 0 calculated from results obtained previously for HA + A−1 type systems. From this fact it has been concluded that the formation of AHB type complexes (relative to the AHA− and BHB+ type complexes) is likely to be favoured by their overall neutrality ensuring weaker peripheral interactions.

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