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17% Non-Fullerene Organic Solar Cells with Annealing-Free Aqueous MoO x.
Tran, Hong Nhan; Park, Sujung; Wibowo, Febrian Tri Adhi; Krishna, Narra Vamsi; Kang, Ju Hwan; Seo, Jung Hwa; Nguyen-Phu, Huy; Jang, Sung-Yeon; Cho, Shinuk.
Afiliação
  • Tran HN; Department of Physics and Energy Harvest Storage Research Center (EHSRC) University of Ulsan Ulsan 44610 Republic of Korea.
  • Park S; Department of Physics and Energy Harvest Storage Research Center (EHSRC) University of Ulsan Ulsan 44610 Republic of Korea.
  • Wibowo FTA; School of Energy and Chemical Engineering Ulsan National Institute of Science and Technology Ulsan 44919 Republic of Korea.
  • Krishna NV; School of Energy and Chemical Engineering Ulsan National Institute of Science and Technology Ulsan 44919 Republic of Korea.
  • Kang JH; Department of Materials Physics Dong-A University Busan 49315 Republic of Korea.
  • Seo JH; Department of Materials Physics Dong-A University Busan 49315 Republic of Korea.
  • Nguyen-Phu H; School of Chemical Engineering University of Ulsan Ulsan 44610 Republic of Korea.
  • Jang SY; School of Energy and Chemical Engineering Ulsan National Institute of Science and Technology Ulsan 44919 Republic of Korea.
  • Cho S; Department of Physics and Energy Harvest Storage Research Center (EHSRC) University of Ulsan Ulsan 44610 Republic of Korea.
Adv Sci (Weinh) ; 7(21): 2002395, 2020 Nov.
Article em En | MEDLINE | ID: mdl-33173748
ABSTRACT
A charge transport layer based on transition metal-oxides prepared by an anhydrous sol-gel method normally requires high-temperature annealing to achieve the desired quality. Although annealing is not a difficult process in the laboratory, it is definitely not a simple process in mass production, such as roll-to-roll, because of the inevitable long cooling step that follows. Therefore, the development of an annealing-free solution-processable metal-oxide is essential for the large-scale commercialization. In this work, a room-temperature processable annealing-free "aqueous" MoO x solution is developed and applied in non-fullerene PBDB-T-2FY6 solar cells. By adjusting the concentration of water in the sol-gel route, an annealing-free MoO x with excellent electrical properties is successfully developed. The PBDB-T-2FY6 solar cell with the general MoO x prepared by the anhydrous sol-gel method shows a low efficiency of 7.7% without annealing. If this anhydrous MoO x is annealed at 200 °C, the efficiency is recovered to 17.1%, which is a normal value typically observed in conventional structure PBDB-T-2FY6 solar cells. However, without any annealing process, the solar cell with aqueous MoO x exhibits comparable performance of 17.0%. In addition, the solar cell with annealing-free aqueous MoO x exhibits better performance and stability without high-temperature annealing compared to the solar cells with PEDOTPSS.
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Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2020 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2020 Tipo de documento: Article