Theoretical and experimental methodologies that can characterize electronic and nuclear dynamics, and the coupling between the two, are needed to understand photoinduced charge transfer in molecular building blocks used in organic photovoltaics. Ongoing developments in ultrafast pump-probe techniques such as time-resolved X-ray absorption spectroscopy, using an X-ray free electron laser in combination with an ultraviolet femtosecond laser, present desirable probes of coupled electronic and nuclear dynamics. In this work, we investigate the charge transfer dynamics of a donor-acceptor pair, which is widely used as a building block in low bandgap block copolymers for organic photovoltaics. We simulate the dynamics of the benzothiadiazole-thio...
The utility of a perspective donor or acceptor molecule for photoelectric applications is difficult ...
Organic photovoltaic (OPV) cells show significant promise as a renewable energy resource capable of ...
Time-resolved spectroscopy is a powerful tool for studying fundamental photophysics in optoelectroni...
To date, alternating co-polymers based on electron-rich and electron-poor units are the most attract...
The development of efficient and low cost photovoltaic technologies is key to a more sustainable ene...
The localization dynamics of excitons in organic semiconductors influence the efficiency of charge t...
Organic photovoltaics (OPVs) show considerable promise as a source of low cost solar energy. Improvi...
Recent progress in organic photovoltaics (OPVs) has been enabled by optimization of the energetic dr...
This thesis is not available on this repository until the author agrees to make it public. If you ar...
Semiconducting polymer nanostructures featuring bulk heterojunction (BHJ) architecture are promising...
Recent progress in organic photovoltaics (OPVs) has been enabled by optimization of the energetic dr...
: Photoinduced charge transfer (CT) excited states and their relaxation mechanisms can be highly int...
Using the Non-Adiabatic Excited States Molecular Dynamics (NA-ESMD) approach, we investigate the ult...
Charge-transfer (CT) processes in donor–acceptor interfaces of organic photovoltaics have been chall...
Two-dimensional electronic spectroscopy with sub-10-fs time resolution reveals signatures of vibroni...
The utility of a perspective donor or acceptor molecule for photoelectric applications is difficult ...
Organic photovoltaic (OPV) cells show significant promise as a renewable energy resource capable of ...
Time-resolved spectroscopy is a powerful tool for studying fundamental photophysics in optoelectroni...
To date, alternating co-polymers based on electron-rich and electron-poor units are the most attract...
The development of efficient and low cost photovoltaic technologies is key to a more sustainable ene...
The localization dynamics of excitons in organic semiconductors influence the efficiency of charge t...
Organic photovoltaics (OPVs) show considerable promise as a source of low cost solar energy. Improvi...
Recent progress in organic photovoltaics (OPVs) has been enabled by optimization of the energetic dr...
This thesis is not available on this repository until the author agrees to make it public. If you ar...
Semiconducting polymer nanostructures featuring bulk heterojunction (BHJ) architecture are promising...
Recent progress in organic photovoltaics (OPVs) has been enabled by optimization of the energetic dr...
: Photoinduced charge transfer (CT) excited states and their relaxation mechanisms can be highly int...
Using the Non-Adiabatic Excited States Molecular Dynamics (NA-ESMD) approach, we investigate the ult...
Charge-transfer (CT) processes in donor–acceptor interfaces of organic photovoltaics have been chall...
Two-dimensional electronic spectroscopy with sub-10-fs time resolution reveals signatures of vibroni...
The utility of a perspective donor or acceptor molecule for photoelectric applications is difficult ...
Organic photovoltaic (OPV) cells show significant promise as a renewable energy resource capable of ...
Time-resolved spectroscopy is a powerful tool for studying fundamental photophysics in optoelectroni...