In this Letter, we study the role of the donor:acceptor interface nanostructure upon charge separation and recombination in organic photovoltaic devices and blend films, using mixtures of PBTTT and two different fullerene derivatives (PC70BM and ICTA) as models for intercalated and nonintercalated morphologies, respectively. Thermodynamic simulations show that while the completely intercalated system exhibits a large free-energy barrier for charge separation, this barrier is significantly lower in the nonintercalated system and almost vanishes when energetic disorder is included in the model. Despite these differences, both femtosecond-resolved transient absorption spectroscopy (TAS) and time-delayed collection field (TDCF) exhibit extensiv...
Polymer photovoltaic cells currently achieve power conversion efficiencies (PCE) above 10% on lab sc...
A key challenge in achieving control over photocurrent generation by bulk-heterojunction organic sol...
Using transient absorption, time-resolved photoluminescence, and device measurements, we show that f...
In this Letter, we study the role of the donor:acceptor interface nanostructure upon charge separati...
In this Letter, we study the role of the donor:acceptor interface nanostructure upon charge separati...
In this Letter, we study the role of the donor:acceptor interface nanostructure upon charge separati...
In this Letter, we study the role of the donor:acceptor interface nanostructure upon charge separati...
Light-induced charge formation is essential for the generation of photocurrent in organic solar cell...
Elucidating the interplay between film morphology, photophysics, and device performance of bulk hete...
Despite performance improvements of organic photovoltaics, the mechanism of photoinduced electron-ho...
A key challenge in achieving control over photocurrent generation by bulk-heterojunction organic sol...
Heterojunction, what’s your function?In organic electronic devices composed of donor and acceptor se...
Elucidating the interplay between film morphology, photophysics, and device performance of bulk hete...
Despite performance improvements of organic photovoltaics, the mechanism of photoinduced electron–ho...
Achieving the highest power conversion efficiencies in bulk heterojunction organic solar cells requi...
Polymer photovoltaic cells currently achieve power conversion efficiencies (PCE) above 10% on lab sc...
A key challenge in achieving control over photocurrent generation by bulk-heterojunction organic sol...
Using transient absorption, time-resolved photoluminescence, and device measurements, we show that f...
In this Letter, we study the role of the donor:acceptor interface nanostructure upon charge separati...
In this Letter, we study the role of the donor:acceptor interface nanostructure upon charge separati...
In this Letter, we study the role of the donor:acceptor interface nanostructure upon charge separati...
In this Letter, we study the role of the donor:acceptor interface nanostructure upon charge separati...
Light-induced charge formation is essential for the generation of photocurrent in organic solar cell...
Elucidating the interplay between film morphology, photophysics, and device performance of bulk hete...
Despite performance improvements of organic photovoltaics, the mechanism of photoinduced electron-ho...
A key challenge in achieving control over photocurrent generation by bulk-heterojunction organic sol...
Heterojunction, what’s your function?In organic electronic devices composed of donor and acceptor se...
Elucidating the interplay between film morphology, photophysics, and device performance of bulk hete...
Despite performance improvements of organic photovoltaics, the mechanism of photoinduced electron–ho...
Achieving the highest power conversion efficiencies in bulk heterojunction organic solar cells requi...
Polymer photovoltaic cells currently achieve power conversion efficiencies (PCE) above 10% on lab sc...
A key challenge in achieving control over photocurrent generation by bulk-heterojunction organic sol...
Using transient absorption, time-resolved photoluminescence, and device measurements, we show that f...