Temperature dependent kinetics for back-electron transfer (BET) from electrons in TiO2 or SnO2/TiO2 core/shell nanoparticles to oxidized donor-bridge-acceptor (D-B-A) sensitizers is reported over a 110° range. Two D-B-A sensitizers (CF3-p and CF3-x) were utilized that differed only by the nature of the bridging ligand: a xylyl spacer that largely insulated the two redox active centers and a phenyl bridge that promoted strong electronic coupling and an adiabatic electron transfer mechanism. An Arrhenius analysis revealed that the activation energies were significantly larger for the core/shell oxides, Ea = 32 ± 4 kJ/mol, compared to TiO2 alone, Ea = 22 ± 6 kJ/mol. The barriers for BET on sensitized TiO2 were within the same range as previous...
Hexaphosphonation of Ru(bpy)32+ provides a basis for surface attachment to nanocrystalline TiO2 in f...
We have studied the interfacial electron-transfer dynamics on TiO2 film sensitized with synthesized ...
A quantum-mechanical description of the electron–hole charge separation and interfacial electron tra...
The mechanism for interfacial electron transfer (ET) from a metal oxide core|shell nanostructure to ...
Recombination of electrons injected into TiO2 with molecular acceptors present at the interface repr...
A thermodynamic analysis of the forward and reverse rate constants for adiabatic and nonadiabatic el...
Intentional variations of the driving force for back electron transfer from titanium dioxide to a su...
Electron injection and back electron transfer (BET) dynamics have been carried out for dibromo fluor...
A thermodynamic analysis of the forward and reverse rate constants for adiabatic and nonadiabatic el...
The need for a clean and renewable energy source is of chief importance to ensure a sustainable futu...
The effect of electronic and nuclear factors on the dynamics of dye-to-semiconductor electron transf...
The photoelectrochemical properties of thiophene-triphenylamine (TTPA) sensitizers (TTPA1-3) used in...
Recent advances in our mechanistic understanding of dye-sensitized electron transfer reactions occur...
The photoelectrochemical properties of thiophene-triphenylamine (TTPA) sensitizers (TTPA1−3) used in...
The need for cleaner and cheaper electricity and fuel drives this research into the fundamental elec...
Hexaphosphonation of Ru(bpy)32+ provides a basis for surface attachment to nanocrystalline TiO2 in f...
We have studied the interfacial electron-transfer dynamics on TiO2 film sensitized with synthesized ...
A quantum-mechanical description of the electron–hole charge separation and interfacial electron tra...
The mechanism for interfacial electron transfer (ET) from a metal oxide core|shell nanostructure to ...
Recombination of electrons injected into TiO2 with molecular acceptors present at the interface repr...
A thermodynamic analysis of the forward and reverse rate constants for adiabatic and nonadiabatic el...
Intentional variations of the driving force for back electron transfer from titanium dioxide to a su...
Electron injection and back electron transfer (BET) dynamics have been carried out for dibromo fluor...
A thermodynamic analysis of the forward and reverse rate constants for adiabatic and nonadiabatic el...
The need for a clean and renewable energy source is of chief importance to ensure a sustainable futu...
The effect of electronic and nuclear factors on the dynamics of dye-to-semiconductor electron transf...
The photoelectrochemical properties of thiophene-triphenylamine (TTPA) sensitizers (TTPA1-3) used in...
Recent advances in our mechanistic understanding of dye-sensitized electron transfer reactions occur...
The photoelectrochemical properties of thiophene-triphenylamine (TTPA) sensitizers (TTPA1−3) used in...
The need for cleaner and cheaper electricity and fuel drives this research into the fundamental elec...
Hexaphosphonation of Ru(bpy)32+ provides a basis for surface attachment to nanocrystalline TiO2 in f...
We have studied the interfacial electron-transfer dynamics on TiO2 film sensitized with synthesized ...
A quantum-mechanical description of the electron–hole charge separation and interfacial electron tra...