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The outer-sphere association of p-sulfonatothiacalix[4]arene with some Co(III) complexes: The effect on their redox activity in aqueous solutions(II)-Co(III) electron transfer rate was evaluated from the analysis and comparison of kinetic data in double Co

The outer-sphere association of p-sulfonatothiacalix[4]arene with some Co(III) complexes: The effect on their redox activity in aqueous solutions(II)-Co(III) electron transfer rate was evaluated from the analysis and comparison of kinetic data in double Co

Electronic and magnetic properties of [Fe(3-MeO-Qsal)2]y•n solvent (n = 0,1) complexes of outer-sphere anion on the spin state, the electronic properties of low-spin Fe(III) complexes

Electronic and magnetic properties of [Fe(3-MeO-Qsal)2]y•n solvent (n = 0,1) complexes of outer-sphere anion on the spin state, the electronic properties of low-spin Fe(III) complexes

Electron transfer in porphyrin multimolecular self-organized nanostructures by the distance, temperature and solvent polarity. The possible pathways and mechanisms of the electron transfer

Steric control in the metal-ligand electron transfer of iminopyridine-ytterbocene complexes
-ligand electron transfer and remains paramagnetic in THF solution. On the other hand, complexes 3b-d readily react

Applications of Hantzsch Esters in Organocatalytic Enantioselective Synthesis reagents for enantioselective organic transformations. They can act as hydride transfer agents to reduce

Computational study of phase change heat transfer and latent heat energy storage for thermal management of electronic components using neural networksThe phase change heat transfer of nano-enhanced phase change materials (NePCMs) was addressed in a

Steric interactions influence on electron transfer efficiency in meso-nitrophenylporphyrins and their chemical dimers-ortho-nitrophenyl substituted OEPs the S₁-state quenching is caused by the direct “through space” electron transfer to low

Far-Zone Resonant Energy Transfer in X-ray Photoemission as a Structure Determination ToolNear-zone Förster resonant energy transfer is the main effect responsible for excitation energy

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