The subtle link between photogenerated charge generation yield (CGY) and bimolecular recombination in organic semiconductor-based photovoltaics is relatively well established as a concept but has proven extremely challenging to demonstrate and probe especially under operational conditions. Received wisdom also teaches that charge generation in excitonic systems will always be lower than non-excitonic semiconductors such as GaAs – but this view is being challenged with the advent of organic semiconductor blends based upon non-fullerene acceptors (NFAs) with power conversion efficiencies exceeding 18%. Using a newly developed approach based upon temperature dependent ultra-sensitive external quantum efficiency measurements, we observe near un...
Photoinduced charge generation forms the physical basis for energy conversion in organic photovoltai...
Thesis (Ph.D.)--University of Washington, 2021To achieve net zero carbon emission required for a sus...
We present a new experimental technique that affords direct quantification of the fraction of charge...
The in‐depth understanding of charge carrier photogeneration and recombination mechanisms in organic...
The power conversion efficiency of organic solar cells has seen a huge improvement in recent years w...
Charge extraction rate in solar cells made of blends of electron donating/accepting organic semicond...
Non-fullerene acceptors (NFAs) have recently outperformed their fullerene counterparts in binary bul...
At the most basic level, a photovoltaic needs to convert solar power to electrical power. Therefore,...
Nonfullerene solar cells have increased their efficiencies up to 13%, yet quantum efficiencies are s...
Charge carrier recombination is studied in operational organic solar cells made from the polymer: fu...
Even though significant breakthroughs with over 18% power conversion efficiencies (PCEs) in polymer:...
Power conversion efficiency of nonfullerene organic solar cells have now increased beyond the record...
The use of non-fullerene acceptors (NFAs) in organic solar cells has led to power conversion ef...
Optimization of the energy levels at the donor–acceptor interface of organic solar cells has driven ...
Achieving the simultaneous increases in the open circuit voltage (Voc), short circuit current (Jsc) ...
Photoinduced charge generation forms the physical basis for energy conversion in organic photovoltai...
Thesis (Ph.D.)--University of Washington, 2021To achieve net zero carbon emission required for a sus...
We present a new experimental technique that affords direct quantification of the fraction of charge...
The in‐depth understanding of charge carrier photogeneration and recombination mechanisms in organic...
The power conversion efficiency of organic solar cells has seen a huge improvement in recent years w...
Charge extraction rate in solar cells made of blends of electron donating/accepting organic semicond...
Non-fullerene acceptors (NFAs) have recently outperformed their fullerene counterparts in binary bul...
At the most basic level, a photovoltaic needs to convert solar power to electrical power. Therefore,...
Nonfullerene solar cells have increased their efficiencies up to 13%, yet quantum efficiencies are s...
Charge carrier recombination is studied in operational organic solar cells made from the polymer: fu...
Even though significant breakthroughs with over 18% power conversion efficiencies (PCEs) in polymer:...
Power conversion efficiency of nonfullerene organic solar cells have now increased beyond the record...
The use of non-fullerene acceptors (NFAs) in organic solar cells has led to power conversion ef...
Optimization of the energy levels at the donor–acceptor interface of organic solar cells has driven ...
Achieving the simultaneous increases in the open circuit voltage (Voc), short circuit current (Jsc) ...
Photoinduced charge generation forms the physical basis for energy conversion in organic photovoltai...
Thesis (Ph.D.)--University of Washington, 2021To achieve net zero carbon emission required for a sus...
We present a new experimental technique that affords direct quantification of the fraction of charge...