\u3cp\u3eIn organic solar cells, photoexcitation of the donor or acceptor phase can result in different efficiencies for charge generation. We investigate this difference for four different 2-pyridyl diketopyrrolopyrrole (DPP) polymer-fullerene solar cells. By comparing the external quantum efficiency spectra of the polymer solar cells fabricated with either [60]PCBM or [70]PCBM fullerene derivatives as acceptor, the efficiency of charge generation via donor excitation and acceptor excitation can both be quantified. Surprisingly, we find that to make charge transfer efficient, the offset in energy between the HOMO levels of donor and acceptor that govern charge transfer after excitation of the acceptor must be larger by ∼0.3 eV than the off...
Recent efforts and progress in polymer solar cell research have boosted the photovoltaic efficiency ...
ABSTRACT: The energetic driving force required to drive charge separation across donor/acceptor hete...
The energetic offset between the initial photoexcited state and charge-transfer (CT) state in organi...
In organic solar cells, photoexcitation of the donor or acceptor phase can result in different effic...
Optical excitation of a polymer-fullerene solar cell via the charge-transfer transition at the donor...
Organic solar cells are cheaper alternatives to traditional Si-based solar cells. We discuss the adv...
Herein, we theoretically and experimentally investigated the mechanisms of charge separation process...
Polymer : fullerene blend films are the best studied materials systems for organic photovoltaic ener...
We report the electronic properties of a new class of non-fullerene electron acceptor molecules with...
The power conversion efficiencies of solar cells incorporating non-fullerene donor-acceptor blends n...
We investigate the internal quantum efficiencies (IQEs) of high efficiency poly-3-hexylthiophene:[6,...
The conventional picture of photocurrent generation in organic solar cells involves photoexcitation ...
Earlier reports demonstrated that ternary organic solar cells (OSC) made of donor polymers (D) blend...
Polymer solar cells (PSCs) consisting of fullerene bis-adduct and poly(3-hexylthiophene) (P3HT) blen...
Charge transfer (CT) state properties at the donor:acceptor interface in organic photovoltaic materi...
Recent efforts and progress in polymer solar cell research have boosted the photovoltaic efficiency ...
ABSTRACT: The energetic driving force required to drive charge separation across donor/acceptor hete...
The energetic offset between the initial photoexcited state and charge-transfer (CT) state in organi...
In organic solar cells, photoexcitation of the donor or acceptor phase can result in different effic...
Optical excitation of a polymer-fullerene solar cell via the charge-transfer transition at the donor...
Organic solar cells are cheaper alternatives to traditional Si-based solar cells. We discuss the adv...
Herein, we theoretically and experimentally investigated the mechanisms of charge separation process...
Polymer : fullerene blend films are the best studied materials systems for organic photovoltaic ener...
We report the electronic properties of a new class of non-fullerene electron acceptor molecules with...
The power conversion efficiencies of solar cells incorporating non-fullerene donor-acceptor blends n...
We investigate the internal quantum efficiencies (IQEs) of high efficiency poly-3-hexylthiophene:[6,...
The conventional picture of photocurrent generation in organic solar cells involves photoexcitation ...
Earlier reports demonstrated that ternary organic solar cells (OSC) made of donor polymers (D) blend...
Polymer solar cells (PSCs) consisting of fullerene bis-adduct and poly(3-hexylthiophene) (P3HT) blen...
Charge transfer (CT) state properties at the donor:acceptor interface in organic photovoltaic materi...
Recent efforts and progress in polymer solar cell research have boosted the photovoltaic efficiency ...
ABSTRACT: The energetic driving force required to drive charge separation across donor/acceptor hete...
The energetic offset between the initial photoexcited state and charge-transfer (CT) state in organi...