Abstract

Luminescence-decay measurements were studied as a simple and fast technique to determine inner-sphere water coordination numbers of LnIII-based complexes in binary solvent systems that are useful for catalysis. The luminescence-decay rates of EuIII-containing complexes were used to elucidate the coordination environment of EuIII in these solvent systems. Our findings were used to empirically derive easy-to-use equations to determine the average number of inner-sphere water and solvent molecules in binary aqueous solvent systems. The increased knowledge of the inner-sphere coordination environment of catalysts that our equations enable can be used to study lanthanide-catalyzed reactions and new precatalysts.

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