2019
DOI: 10.1039/c8ta11484f
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Highly efficient near-infrared and semitransparent polymer solar cells based on an ultra-narrow bandgap nonfullerene acceptor

Abstract: Non-fullerene polymer solar cells based on a low bandgap polymer PTB7-Th and an ultra-narrow bandgap acceptor ACS8 exhibited an optimal PCE of 13.2%, indicating that the blend of PTB7-Th/ACS8 has potential for the practical applications of PSCs.

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Cited by 91 publications
(72 citation statements)
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“…Reprinted with permission. [59] Copyright 2019, Royal Societyof Chemistry. and acceptorm aterials, ah igh PCE of 11.4 %w as obtained for OSCs with al arge device area of 1cm 2 ,a nd ah igh PCEo f 12.2 %w as also obtained for OSCs with an active layer thickness of up to 285 nm (Figure4c);this indicates that fluorinated PM6:IT-4F is an ideal candidate for the roll-to-roll production of efficient OSCs in the future.…”
Section: Fluorinated Sm Acceptorsmentioning
confidence: 99%
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“…Reprinted with permission. [59] Copyright 2019, Royal Societyof Chemistry. and acceptorm aterials, ah igh PCE of 11.4 %w as obtained for OSCs with al arge device area of 1cm 2 ,a nd ah igh PCEo f 12.2 %w as also obtained for OSCs with an active layer thickness of up to 285 nm (Figure4c);this indicates that fluorinated PM6:IT-4F is an ideal candidate for the roll-to-roll production of efficient OSCs in the future.…”
Section: Fluorinated Sm Acceptorsmentioning
confidence: 99%
“…[58] Its OSCs achieved an impressive J sc of 25.3 mA cm À2 ,d espite energy losses as lowa s 0.509 eV.Z hang et al synthesized another ultranarrow band gap (1.30 eV) SM acceptor,A CS8, by introducing alkylthio substituents into the thienyl bridges. [59] Matching with PTB7-Th, its OSCs achieved aP CE of 13.2 %, and the corresponding semitransparent OSCs exhibiteda no utstanding PCE of 11.1 % under an averagev isible transmittanceo f2 8.6 % ( Figure 4d). Different from typical SM acceptors with af used core, Chen et al developed aS Ma cceptor,H C-PCIC, with ad ifluorinated unfusedc ore. [60] Matching with fluorinated PTQ10, its OSCs achievedaPCE of 10.42 %, although the HOMO offset was near zero.…”
Section: Fluorinated Sm Acceptorsmentioning
confidence: 99%
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“…Although the relatively high PCEs have been obtained for A‐D‐A NFAs‐based PSCs, it is still a challenge to achieve a high V oc and a large J sc simultaneously, which is important for further improving PSCs performance . As known, the V oc of PSCs is proportional to the difference between the lowest unoccupied molecular orbital (LUMO) of acceptor and the highest occupied molecular orbital (HOMO) of donor, and the J sc is related to the absorption and charge mobility of blend film . Therefore, precisely tuning the energy levels and optical bandgaps (Enormalgopt) of donor and acceptor is important for achieving high V oc and large J sc simultaneously …”
Section: Introductionmentioning
confidence: 99%