We study charge generation and recombination in organic solar cells that utilize perylene tetracarboxydiimide (PDI) as an electron acceptor and a conjugated polymer as an electron donor. PDI is a promising electron acceptor because of its strong red absorption, LUMO well placed to accept electrons from many conjugated polymers, and good electron mobility. However, we find that, when PDI is finely dispersed in a conjugated polymer, the device efficiency is severely limited by very fast bimolecular charge recombination and that, when the blend is made coarser, the device efficiency becomes limited instead by PDI excitons quickly relaxing into stabilized intermolecular states between PDI molecules rather than undergoing charge transfer. The in...
The electronic relaxation processes of a photoexcited linear perylenediimide-perylenemonoimide (PDI-...
Perylenediimides (PDIs) offer a number of attractive characteristics as alternatives to fullerenes i...
Recently, non-fullerene (NF) polymer solar cells (PSCs), where new electron acceptor (eA) materials ...
Herein we present the design of three perylene diimide (PDI) derivatives with different molecular ge...
The origin of high current density in efficient non-fullerene based bulk heterojunction (BHJ) organi...
Organic solar cells are cheaper alternatives to traditional Si-based solar cells. We discuss the adv...
A singly-linked perylene bisimide dimer (di-PBI) and a low band gap polymer based on dithienocarbazo...
Owing to their good photophysical properties, perylene diimides (PDI) have been shown to possess gre...
Low-bandgap diketopyrrolopyrrole- and carbazole-based polymer bulk-heterojunction solar cells exhibi...
The thrust towards energy conservation and reduced environmental footprint has fueled intensive res...
Photoinduced electron transfer at the interface of a donor and acceptor material is the primary step...
Non-fullerene acceptors have recently attracted tremendous interest due to their potential as altern...
ABSTRACT: Low-bandgap diketopyrrolopyrrole- and carbazole-based polymer bulk-heterojunction solar ce...
International audienceAim is to study the behavior of photo-generated charge carrier recombination p...
In this work, a range of nonfullerene organic solar cells comprising two perylene diimide (PDI)-base...
The electronic relaxation processes of a photoexcited linear perylenediimide-perylenemonoimide (PDI-...
Perylenediimides (PDIs) offer a number of attractive characteristics as alternatives to fullerenes i...
Recently, non-fullerene (NF) polymer solar cells (PSCs), where new electron acceptor (eA) materials ...
Herein we present the design of three perylene diimide (PDI) derivatives with different molecular ge...
The origin of high current density in efficient non-fullerene based bulk heterojunction (BHJ) organi...
Organic solar cells are cheaper alternatives to traditional Si-based solar cells. We discuss the adv...
A singly-linked perylene bisimide dimer (di-PBI) and a low band gap polymer based on dithienocarbazo...
Owing to their good photophysical properties, perylene diimides (PDI) have been shown to possess gre...
Low-bandgap diketopyrrolopyrrole- and carbazole-based polymer bulk-heterojunction solar cells exhibi...
The thrust towards energy conservation and reduced environmental footprint has fueled intensive res...
Photoinduced electron transfer at the interface of a donor and acceptor material is the primary step...
Non-fullerene acceptors have recently attracted tremendous interest due to their potential as altern...
ABSTRACT: Low-bandgap diketopyrrolopyrrole- and carbazole-based polymer bulk-heterojunction solar ce...
International audienceAim is to study the behavior of photo-generated charge carrier recombination p...
In this work, a range of nonfullerene organic solar cells comprising two perylene diimide (PDI)-base...
The electronic relaxation processes of a photoexcited linear perylenediimide-perylenemonoimide (PDI-...
Perylenediimides (PDIs) offer a number of attractive characteristics as alternatives to fullerenes i...
Recently, non-fullerene (NF) polymer solar cells (PSCs), where new electron acceptor (eA) materials ...