We report three n-type polymeric electron acceptors (PFPDI-TT, PFPDI-T, and PFPDI-Se) based on the fused perylene diimide (FPDI) and thieno[3,2-<i>b</i>]thiophene, thiophene, or selenophene units for all-polymer solar cells (all-PSCs). These FPDI-based polymer acceptors exhibit strong absorption between 350 and 650 nm with wide optical bandgap of 1.86–1.91 eV, showing good absorption compensation with the narrow bandgap polymer donor. The lowest unoccupied molecular orbital (LUMO) energy levels were located at around −4.11 eV, which are comparable with those of the fullerene derivatives and other small molecular electron acceptors. The conventional all-PSCs based on the three polymer acceptors and PTB7-Th as polymer donor gave remarkable ...
All-polymer solar cells with 7.57% power conversion efficiency are achieved via a new perylenediimid...
All-polymer solar cells have shown great potential as flexible and portable power generators. These ...
Here we demonstrate efficient all-polymer solar cells (all-PSCs) based on a polymer acceptor named P...
Two polymeric electron acceptors (PFPDI-2T and PFPDI-2FT) based on the fused perylene diimide (PDI) ...
Four polymers based on perylenediimide co-polymerized with thiophene, bithiophene, selenophone and t...
Considering the combination of the advantages of both the acceptor–donor–acceptor and perylene diimi...
Five copolymers, having 4,4,9,9-tetrakis(4-hexylphenyl)-indaceno[1,2-b: 5,6-b']-dithiophene as ...
As strong electron acceptors, perylene diimides (PDI) have been widely utilized to prepare polymeric...
Anon-fully conjugated polymer as a new class of acceptor materials has shown some advantages over it...
We report herein the development of high performance all-polymer solar cells (all-PSCs) based on a n...
We report a systematic investigation of the correlations between the electron mobility of polymer ac...
Polymer acceptors based on perylene diimide (PDI) with three symmetrical S-heteroacene backbone unit...
We design and synthesize a new main-chain-twisted fused-ring narrow band gap n-type organic semicond...
The rational molecular design and structural modification of quasi-two-dimensional fused perylene di...
\u3cp\u3eGrowing interests have been devoted to the synthesis of polymer acceptors as alternatives t...
All-polymer solar cells with 7.57% power conversion efficiency are achieved via a new perylenediimid...
All-polymer solar cells have shown great potential as flexible and portable power generators. These ...
Here we demonstrate efficient all-polymer solar cells (all-PSCs) based on a polymer acceptor named P...
Two polymeric electron acceptors (PFPDI-2T and PFPDI-2FT) based on the fused perylene diimide (PDI) ...
Four polymers based on perylenediimide co-polymerized with thiophene, bithiophene, selenophone and t...
Considering the combination of the advantages of both the acceptor–donor–acceptor and perylene diimi...
Five copolymers, having 4,4,9,9-tetrakis(4-hexylphenyl)-indaceno[1,2-b: 5,6-b']-dithiophene as ...
As strong electron acceptors, perylene diimides (PDI) have been widely utilized to prepare polymeric...
Anon-fully conjugated polymer as a new class of acceptor materials has shown some advantages over it...
We report herein the development of high performance all-polymer solar cells (all-PSCs) based on a n...
We report a systematic investigation of the correlations between the electron mobility of polymer ac...
Polymer acceptors based on perylene diimide (PDI) with three symmetrical S-heteroacene backbone unit...
We design and synthesize a new main-chain-twisted fused-ring narrow band gap n-type organic semicond...
The rational molecular design and structural modification of quasi-two-dimensional fused perylene di...
\u3cp\u3eGrowing interests have been devoted to the synthesis of polymer acceptors as alternatives t...
All-polymer solar cells with 7.57% power conversion efficiency are achieved via a new perylenediimid...
All-polymer solar cells have shown great potential as flexible and portable power generators. These ...
Here we demonstrate efficient all-polymer solar cells (all-PSCs) based on a polymer acceptor named P...