A regularly alternating terpolymer and a random terpolymer were synthesized from the constituent units of two donor–acceptor polymers with complementary absorption. They were then compared to a physical blend of these two donor–acceptor polymers in order to investigate the best means of extending the light absorption range in bulk heterojunction (BHJ) solar cells. While all three methods broadened the light absorption, the physical blend provided the best improvement in power conversion efficiency (4.10% vs 3.63% and 2.67% for the random and regular terpolymers, respectively). This is due to the increase in aggregation in the physical blend, as demonstrated in the UV–vis spectra, which likely leads to higher local mobility and less recombin...
Org. solar cells based on interpenetrating networks of conjugated polymer donors and fullerene-based...
This paper investigates the use of ternary blends (two donor polymers and fullerene acceptor) in bul...
Here two contrasting approaches to polymer–fullerene solar cells are compared. In the first approach...
A regularly alternating terpolymer and a random terpolymer were synthesized from the constituent uni...
Solid-state heterojunction solar cells formed from binary blends of conjugated polymers and fulleren...
Random terpolymers were synthesized from the electron-rich unit thiophene as the donor and two elect...
Random terpolymers were synthesized from the electron-rich unit thiophene as the donor and two elect...
Ternary organic blends have potential in realizing efficient bulk heterojunction (BHJ) organic solar...
Ternary organic blends have potential in realizing efficient bulk heterojunction (BHJ) organic solar...
Ternary organic blends have potential in realizing efficient bulk heterojunction (BHJ) organic solar...
Org. solar cells based on interpenetrating networks of conjugated polymer donors and fullerene-based...
2016-04-01Bulk-heterojunction (BHJ) polymer:fullerene solar cells have drawn vast interest for low-c...
Org. solar cells based on interpenetrating networks of conjugated polymer donors and fullerene-based...
Org. solar cells based on interpenetrating networks of conjugated polymer donors and fullerene-based...
Org. solar cells based on interpenetrating networks of conjugated polymer donors and fullerene-based...
Org. solar cells based on interpenetrating networks of conjugated polymer donors and fullerene-based...
This paper investigates the use of ternary blends (two donor polymers and fullerene acceptor) in bul...
Here two contrasting approaches to polymer–fullerene solar cells are compared. In the first approach...
A regularly alternating terpolymer and a random terpolymer were synthesized from the constituent uni...
Solid-state heterojunction solar cells formed from binary blends of conjugated polymers and fulleren...
Random terpolymers were synthesized from the electron-rich unit thiophene as the donor and two elect...
Random terpolymers were synthesized from the electron-rich unit thiophene as the donor and two elect...
Ternary organic blends have potential in realizing efficient bulk heterojunction (BHJ) organic solar...
Ternary organic blends have potential in realizing efficient bulk heterojunction (BHJ) organic solar...
Ternary organic blends have potential in realizing efficient bulk heterojunction (BHJ) organic solar...
Org. solar cells based on interpenetrating networks of conjugated polymer donors and fullerene-based...
2016-04-01Bulk-heterojunction (BHJ) polymer:fullerene solar cells have drawn vast interest for low-c...
Org. solar cells based on interpenetrating networks of conjugated polymer donors and fullerene-based...
Org. solar cells based on interpenetrating networks of conjugated polymer donors and fullerene-based...
Org. solar cells based on interpenetrating networks of conjugated polymer donors and fullerene-based...
Org. solar cells based on interpenetrating networks of conjugated polymer donors and fullerene-based...
This paper investigates the use of ternary blends (two donor polymers and fullerene acceptor) in bul...
Here two contrasting approaches to polymer–fullerene solar cells are compared. In the first approach...