A high-molecular-weight conjugated polymer based on alternating electron-rich and electron-deficient fused ring systems provides efficient polymer solar cells when blended with C60 and C70 fullerene derivatives. The morphology of the new polymer/fullerene blend reduces bimolecular recombination and allows reaching high fill factors and power conversion efficiencies for films up to 300 nm thickness
Bulk donor - acceptor heterojunctions between conjugated polymers and fullerenes have been utilized ...
Bulk donor - acceptor heterojunctions between conjugated polymers and fullerenes have been utilized ...
Bulk donor - acceptor heterojunctions between conjugated polymers and fullerenes have been utilized ...
A high-molecular-weight conjugated polymer based on alternating electron-rich and electron-deficient...
A high-molecular-weight conjugated polymer based on alternating electron-rich and electron-deficient...
A high-molecular-weight conjugated polymer based on alternating electron-rich and electron-deficient...
A high-molecular-weight conjugated polymer based on alternating electron-rich and electron-deficient...
A high-molecular-weight conjugated polymer based on alternating electron-rich and electron-deficient...
Developing effective methods to make efficient bulk-heterojunction polymer solar cells at roll-to-ro...
Developing effective methods to make efficient bulk-heterojunction polymer solar cells at roll-to-ro...
Developing effective methods to make efficient bulk-heterojunction polymer solar cells at roll-to-ro...
\u3cp\u3eDeveloping effective methods to make efficient bulk-heterojunction polymer solar cells at r...
Developing effective methods to make efficient bulk-heterojunction polymer solar cells at roll-to-ro...
Bulk donor — acceptor heterojunctions between conjugated polymers and fullerenes have been utilized ...
Bulk donor — acceptor heterojunctions between conjugated polymers and fullerenes have been utilized ...
Bulk donor - acceptor heterojunctions between conjugated polymers and fullerenes have been utilized ...
Bulk donor - acceptor heterojunctions between conjugated polymers and fullerenes have been utilized ...
Bulk donor - acceptor heterojunctions between conjugated polymers and fullerenes have been utilized ...
A high-molecular-weight conjugated polymer based on alternating electron-rich and electron-deficient...
A high-molecular-weight conjugated polymer based on alternating electron-rich and electron-deficient...
A high-molecular-weight conjugated polymer based on alternating electron-rich and electron-deficient...
A high-molecular-weight conjugated polymer based on alternating electron-rich and electron-deficient...
A high-molecular-weight conjugated polymer based on alternating electron-rich and electron-deficient...
Developing effective methods to make efficient bulk-heterojunction polymer solar cells at roll-to-ro...
Developing effective methods to make efficient bulk-heterojunction polymer solar cells at roll-to-ro...
Developing effective methods to make efficient bulk-heterojunction polymer solar cells at roll-to-ro...
\u3cp\u3eDeveloping effective methods to make efficient bulk-heterojunction polymer solar cells at r...
Developing effective methods to make efficient bulk-heterojunction polymer solar cells at roll-to-ro...
Bulk donor — acceptor heterojunctions between conjugated polymers and fullerenes have been utilized ...
Bulk donor — acceptor heterojunctions between conjugated polymers and fullerenes have been utilized ...
Bulk donor - acceptor heterojunctions between conjugated polymers and fullerenes have been utilized ...
Bulk donor - acceptor heterojunctions between conjugated polymers and fullerenes have been utilized ...
Bulk donor - acceptor heterojunctions between conjugated polymers and fullerenes have been utilized ...