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A Highly Crystalline Wide-Band-Gap Conjugated Polymer toward High-Performance As-Cast Nonfullerene Polymer Solar Cells

Jiang, Haiying (author)
South China University of Technology, Peoples R China
Wang, Zhen (author)
South China University of Technology, Peoples R China
Zhang, Lianjie (author)
South China University of Technology, Peoples R China
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Zhong, Anxing (author)
South China University of Technology, Peoples R China
Liu, Xuncheng (author)
South China University of Technology, Peoples R China
Pan, Feilong (author)
South China University of Technology, Peoples R China
Wanzhu, Cai (author)
Linköpings universitet,Biomolekylär och Organisk Elektronik,Tekniska fakulteten
Inganäs, Olle (author)
Linköpings universitet,Biomolekylär och Organisk Elektronik,Tekniska fakulteten
Liu, Yi (author)
Lawrence Berkeley National Lab, CA 94720 USA
Chen, Junwu (author)
South China University of Technology, Peoples R China
Cao, Yong (author)
South China University of Technology, Peoples R China
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 (creator_code:org_t)
2017-10-05
2017
English.
In: ACS Applied Materials and Interfaces. - : AMER CHEMICAL SOC. - 1944-8244 .- 1944-8252. ; 9:41, s. 36061-36069
  • Journal article (peer-reviewed)
Abstract Subject headings
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  • A new wide-band-gap conjugated polymer PBODT was successfully synthesized that showed high crystallinity and was utilized as, the active material in nonfullerene bulk-heterojunction, polymer solar cells (PSCs). The photovoltaic devices based on the as-cast blend films of PBODT with ITIC and IDIC acceptors showed notable power conversion efficiencies (PCEs) of 7.06% and 9:09%, with high open-circuit voltages of 1.00 and 0.93 V that correspond to low energy losses of 0.59 and 0.69 eV, respectively. In the case of PBODT:ITIC, lower exciton quenching efficiency and monomolecular recombination are found for devices with small driving force. On the other hand, the relatively higher driving force and suppressed monomolecular recombination for PBODT:IDIC devices are identified to be the reason for their higher short-circuit current density (J(sc)) and higher PCEs. In addition, when processed with the nonchlorinated solvent 1,2,4-trimethylbenzene, a good, PCE of 8.19% was still, achieved for the IDIC-based device. Our work shows that such wide-band-gap polymers have great potential for the environmentally friendly fabrication of highly efficient PSCs.

Subject headings

NATURVETENSKAP  -- Kemi -- Polymerkemi (hsv//swe)
NATURAL SCIENCES  -- Chemical Sciences -- Polymer Chemistry (hsv//eng)

Keyword

bulk-heterojunction polymer solar cells; charge-transfer state; crystallinity; energy loss; nonfullerene acceptor; wide-band-gap polymer

Publication and Content Type

ref (subject category)
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