We report comparative indoor and outdoor stability testing of organic solar cells based on a blend between a donor-acceptor polyfluorene copolymer and a fullerene derivative. The outdoor testing was conducted for a period over 12,000 hours in Sheffield, England, with a Ts80 lifetime determined in excess of 10,000 hours (420 days). Indoor lifetime testing was performed on solar cells using a solar simulator under a constant irradiance of 1000 W/m(2) for more than 650 hours. We show that under the conditions explored here, device degradation under the two sets of conditions is approximately dependent on the absorbed optical energy dose
This article belongs to the Special Issue Organic Photovoltaics.-- et al.We report on the degradatio...
Comparisons between different laboratories on long-term stability analyses of perovskite solar cells...
Organic solar cells promise electricity generation at very low cost, and higher installation flexibi...
We report comparative indoor and outdoor stability testing of organic solar cells based on a blend b...
In spite of the high potential of polymer photovoltaic (PV) cells, considerable improvement of thei...
We report on an accurate indoor determination of the power conversion efficiency under standard test...
International audienceThis work is part of the inter-laboratory collaboration to study the stability...
This work is part of the inter-laboratory collaboration to study the stability of seven distinct set...
This work is part of the inter-laboratory collaboration to study the stability of seven distinct set...
Performance degradation is one of the key obstacles limiting the commercial application of organic p...
A large number of flexible polymer solar modules comprising 16 serially connected individual cells w...
Organic solar cells bear the potential to be used as flexible, light weight and cheap source of rene...
This work is part of the inter-laboratory collaboration to study the stability of seven distinct set...
We report on the degradation of organic photovoltaic (OPV) cells in both indoor and outdoor environm...
This article belongs to the Special Issue Organic Photovoltaics.-- et al.We report on the degradatio...
Comparisons between different laboratories on long-term stability analyses of perovskite solar cells...
Organic solar cells promise electricity generation at very low cost, and higher installation flexibi...
We report comparative indoor and outdoor stability testing of organic solar cells based on a blend b...
In spite of the high potential of polymer photovoltaic (PV) cells, considerable improvement of thei...
We report on an accurate indoor determination of the power conversion efficiency under standard test...
International audienceThis work is part of the inter-laboratory collaboration to study the stability...
This work is part of the inter-laboratory collaboration to study the stability of seven distinct set...
This work is part of the inter-laboratory collaboration to study the stability of seven distinct set...
Performance degradation is one of the key obstacles limiting the commercial application of organic p...
A large number of flexible polymer solar modules comprising 16 serially connected individual cells w...
Organic solar cells bear the potential to be used as flexible, light weight and cheap source of rene...
This work is part of the inter-laboratory collaboration to study the stability of seven distinct set...
We report on the degradation of organic photovoltaic (OPV) cells in both indoor and outdoor environm...
This article belongs to the Special Issue Organic Photovoltaics.-- et al.We report on the degradatio...
Comparisons between different laboratories on long-term stability analyses of perovskite solar cells...
Organic solar cells promise electricity generation at very low cost, and higher installation flexibi...