Abstract

We report a study which correlates the metrical parameters of the unsubstituted tetradentate copper Schiff base complexes containing N 2O 2, N 2N 2 and N 2S 2 donors with their respective redox potentials. To achieve this aim we were required to structurally characterise many of the seminal species including, [CuAmbpr-H 2], [CuH 4Amben][ClO 4] 2, [CuH 4Ambpr][ClO 4] 2, [CuH 4Ambbu][ClO 4] 2, CuH 4Salpr and [Cu(SSalen) 2][ClO 4] 2 which were absent from the crystallographic catalogue. The oxidative dehydrogenation of CuH 4Salen is revisited through the isolation and structural characterisation of ( N-salicyl- N′-salicylidene-1,2-ethylenediamine)copper(II) (CuH 3Salen). The redox potentials of the three series of compounds are measured, clearly identifying the operating ranges of each donor set. The modulating effect of coordination geometry on redox potential is evident in the series of N 2O 2 complexes. This study forms the basis of the rational synthesis of tuneable copper redox sensors by demonstrating the regions in which the various donor sets operate.

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