A thermodynamic analysis of the forward and reverse rate constants for adiabatic and nonadiabatic electron transfer equilibria over an 80 K temperature range is reported. The kinetic data were acquired by a spectroscopic approach that utilized excited state injection into TiO2 by sensitizers with two redox active groups linked through aromatic bridges that allow for intramolecular adiabatic (bridge = phenyl) or nonadiabatic (bridge = xylyl) electron transfer. Two impactful results were garnered from this analysis: (1) entropic barriers controlled the adiabatic electron transfer kinetics, and (2) the free energy barriers were unaffected by the degree of electronic coupling within experimental uncertainty. The second result stands in contrast...
Electron transfers (ET) between a donor (D) and an acceptor (A) through a molecular bridge (B) are o...
Electron transfer is a ubiquitous elementary process of chemical reactions[1]. Electron transfer is ...
The control of lateral electron-transfer reactions is important for many solar energy conversion str...
A thermodynamic analysis of the forward and reverse rate constants for adiabatic and nonadiabatic el...
Temperature dependent kinetics for back-electron transfer (BET) from electrons in TiO2 or SnO2/TiO2 ...
The relation between the energy of the intervalence (or metal-to-metal charge-transfer) transition i...
Recombination of electrons injected into TiO2 with molecular acceptors present at the interface repr...
Measurements have been performed of the temperature dependence of highly exoergic interfacial electr...
Electron transfer reactions through Donor-Bridge-Acceptor (DBA) molecules are important as they cons...
Electron transfer kinetics between donor and acceptor molecules in electrolytes has been described b...
Recombination of electrons injected into TiO<sub>2</sub> with molecular acceptors present at the int...
Intentional variations of the driving force for back electron transfer from titanium dioxide to a su...
A theoretical and experimental approach to the degree of adiabaticity of electrode processes is cons...
A quantum-mechanical description of the electron–hole charge separation and interfacial electron tra...
A nonadiabatic molecular dynamics (MD) simulation of the photoinduced electron transfer (ET) from a ...
Electron transfers (ET) between a donor (D) and an acceptor (A) through a molecular bridge (B) are o...
Electron transfer is a ubiquitous elementary process of chemical reactions[1]. Electron transfer is ...
The control of lateral electron-transfer reactions is important for many solar energy conversion str...
A thermodynamic analysis of the forward and reverse rate constants for adiabatic and nonadiabatic el...
Temperature dependent kinetics for back-electron transfer (BET) from electrons in TiO2 or SnO2/TiO2 ...
The relation between the energy of the intervalence (or metal-to-metal charge-transfer) transition i...
Recombination of electrons injected into TiO2 with molecular acceptors present at the interface repr...
Measurements have been performed of the temperature dependence of highly exoergic interfacial electr...
Electron transfer reactions through Donor-Bridge-Acceptor (DBA) molecules are important as they cons...
Electron transfer kinetics between donor and acceptor molecules in electrolytes has been described b...
Recombination of electrons injected into TiO<sub>2</sub> with molecular acceptors present at the int...
Intentional variations of the driving force for back electron transfer from titanium dioxide to a su...
A theoretical and experimental approach to the degree of adiabaticity of electrode processes is cons...
A quantum-mechanical description of the electron–hole charge separation and interfacial electron tra...
A nonadiabatic molecular dynamics (MD) simulation of the photoinduced electron transfer (ET) from a ...
Electron transfers (ET) between a donor (D) and an acceptor (A) through a molecular bridge (B) are o...
Electron transfer is a ubiquitous elementary process of chemical reactions[1]. Electron transfer is ...
The control of lateral electron-transfer reactions is important for many solar energy conversion str...