Electrons are the workhorses of solar energy conversion. Conversion of the energy of light to electricity in photovoltaics, or to energy-rich molecules (solar fuel) through photocatalytic processes, invariably starts with photoinduced generation of energy-rich electrons. The harvesting of these electrons in practical devices rests on a series of electron transfer processes whose dynamics and efficiencies determine the function of materials and devices. To capture the energy of a photogenerated electron-hole pair in a solar cell material, charges of opposite sign have to be separated against electrostatic attractions, prevented from recombining and being transported through the active material to electrodes where they can be extracted. In ph...
The general case of a heterogeneous electron transfer reaction is realized by ultrafast electron tra...
The general case of a heterogeneous electron transfer reaction is realized by ultrafast electron tra...
In solar energy harvesting devices based on molecular semiconductors, such as organic photovoltaics ...
Electrons are the workhorses of solar energy conversion. Conversion of the energy of light to electr...
Solar energy is the most abundant renewable energy source available. Conversion of light into electr...
The key materials used to convert solar energy into electricity in the Grätzel-type solar cells are ...
textThe impetus of unsustainable consumption coupled with major environmental concerns has renewed o...
In solar energy harvesting devices based on molecular semiconductors, such as organic photovoltaics ...
The early time charge carrier dynamics in quantum dot‐sensitized and organo‐metal halide perovskite ...
The early time charge carrier dynamics in quantum dot‐sensitized and organo‐metal halide perovskite ...
This Thesis presents a thorough study of the electron transfer (ET) processes, both inter-molecular ...
Electron transfer and subsequent charge separation across donor-acceptor heterojunctions remain the ...
Electron transfer and subsequent charge separation across donor-acceptor heterojunctions remain the ...
Photoinduced electron transfer is a fundamentally interesting process; it occurs everywhere in the n...
After presenting the basic theoretical models of excitation energy transfer and charge transfer, I d...
The general case of a heterogeneous electron transfer reaction is realized by ultrafast electron tra...
The general case of a heterogeneous electron transfer reaction is realized by ultrafast electron tra...
In solar energy harvesting devices based on molecular semiconductors, such as organic photovoltaics ...
Electrons are the workhorses of solar energy conversion. Conversion of the energy of light to electr...
Solar energy is the most abundant renewable energy source available. Conversion of light into electr...
The key materials used to convert solar energy into electricity in the Grätzel-type solar cells are ...
textThe impetus of unsustainable consumption coupled with major environmental concerns has renewed o...
In solar energy harvesting devices based on molecular semiconductors, such as organic photovoltaics ...
The early time charge carrier dynamics in quantum dot‐sensitized and organo‐metal halide perovskite ...
The early time charge carrier dynamics in quantum dot‐sensitized and organo‐metal halide perovskite ...
This Thesis presents a thorough study of the electron transfer (ET) processes, both inter-molecular ...
Electron transfer and subsequent charge separation across donor-acceptor heterojunctions remain the ...
Electron transfer and subsequent charge separation across donor-acceptor heterojunctions remain the ...
Photoinduced electron transfer is a fundamentally interesting process; it occurs everywhere in the n...
After presenting the basic theoretical models of excitation energy transfer and charge transfer, I d...
The general case of a heterogeneous electron transfer reaction is realized by ultrafast electron tra...
The general case of a heterogeneous electron transfer reaction is realized by ultrafast electron tra...
In solar energy harvesting devices based on molecular semiconductors, such as organic photovoltaics ...