The strategies to enhance electron transfer rates between redox-active, light-harvesting molecules attached to semiconductor surfaces and redox mediators in solution by modifying molecular structure are not fully investigated yet. Therefore, the design of molecules with controlled electron transfer rates remains a challenge. The aims of this work are to quantify the effect of long alkyl chain substitution on the electron transfer from cobalt(II/III) tris(2,2′-bipyridine) to organic molecules containing carbazole and thiophene and to demonstrate that alkyl chains can be used to enhance electron transfer between donor–acceptor pairs. To this end, we study the effect of using a combination of donor and acceptor molecules with and without alk...
The function of solvent in facilitating long-range coupling in donor/bridge/acceptor complexes is no...
By tailing charges on their paths within a molecule, one can gain fundamental knowledge of their inh...
The dynamics of heterogeneous electron transfer ET from the polycyclic aromatic chromophore peryle...
The strategies to enhance electron transfer rates between redox-active, light-harvesting molecules a...
Fast electron transfer (ET) between surface-bound dye molecules and electron donor molecules dissolv...
Electron transfer theories predict that rates of charge transfer vary with the dielectric properties...
© 2020 American Chemical Society. Electron transfer theories predict that rates of charge transfer v...
Electron transfer is one of the fundamentally important reactions in physics, chemistry, and biology...
Electron-transfer rate constants were measured for a variety of molecular systems. Therate constant ...
The factors affecting electron transfer at semiconductor electrodes sensitised with molecules and in...
Electron transfer reactions through Donor-Bridge-Acceptor (DBA) molecules are important as they cons...
The development of efficient organic electronic devices depends substantially on the electronic coup...
We have investigated the electron-transfer kinetics of ferrocene groups covalently tethered to surfa...
Electron transfer kinetics between donor and acceptor molecules in electrolytes has been described b...
The electron transfer (ET) from organic dye molecules to semiconductor-colloidal systems is characte...
The function of solvent in facilitating long-range coupling in donor/bridge/acceptor complexes is no...
By tailing charges on their paths within a molecule, one can gain fundamental knowledge of their inh...
The dynamics of heterogeneous electron transfer ET from the polycyclic aromatic chromophore peryle...
The strategies to enhance electron transfer rates between redox-active, light-harvesting molecules a...
Fast electron transfer (ET) between surface-bound dye molecules and electron donor molecules dissolv...
Electron transfer theories predict that rates of charge transfer vary with the dielectric properties...
© 2020 American Chemical Society. Electron transfer theories predict that rates of charge transfer v...
Electron transfer is one of the fundamentally important reactions in physics, chemistry, and biology...
Electron-transfer rate constants were measured for a variety of molecular systems. Therate constant ...
The factors affecting electron transfer at semiconductor electrodes sensitised with molecules and in...
Electron transfer reactions through Donor-Bridge-Acceptor (DBA) molecules are important as they cons...
The development of efficient organic electronic devices depends substantially on the electronic coup...
We have investigated the electron-transfer kinetics of ferrocene groups covalently tethered to surfa...
Electron transfer kinetics between donor and acceptor molecules in electrolytes has been described b...
The electron transfer (ET) from organic dye molecules to semiconductor-colloidal systems is characte...
The function of solvent in facilitating long-range coupling in donor/bridge/acceptor complexes is no...
By tailing charges on their paths within a molecule, one can gain fundamental knowledge of their inh...
The dynamics of heterogeneous electron transfer ET from the polycyclic aromatic chromophore peryle...