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Highly Efficient and Stable Organic Solar Cells Enabled by a Commercialized Simple Thieno[3,2-b]thiophene Additive.
Chen, Jinwei; Wang, Yiwen; Wang, Lei; Lin, Francis R; Han, Chenyang; Ma, Xiao; Zheng, Jialu; Li, Zhao; Zapien, Juan Antonio; Gao, Huanhuan; Jen, Alex K-Y.
Afiliación
  • Chen J; College of New Energy, Xi'an Shiyou University, Xi'an, Shaanxi, 710065, China.
  • Wang Y; Department of Materials Science and Engineering, City University of Hong Kong, Kowloon, Hong Kong, 99907, China.
  • Wang L; Institute of New Energy Technology, College of Physics and Optoelectronic Engineering, Jinan University, Guangzhou, 510632, China.
  • Lin FR; Hong Kong Institute for Clean Energy (HKICE), City University of Hong Kong, Kowloon, Hong Kong, 999077, China.
  • Han C; College of New Energy, Xi'an Shiyou University, Xi'an, Shaanxi, 710065, China.
  • Ma X; Department of Materials Science and Engineering, City University of Hong Kong, Kowloon, Hong Kong, 99907, China.
  • Zheng J; Hong Kong Institute for Clean Energy (HKICE), City University of Hong Kong, Kowloon, Hong Kong, 999077, China.
  • Li Z; College of New Energy, Xi'an Shiyou University, Xi'an, Shaanxi, 710065, China.
  • Zapien JA; College of New Energy, Xi'an Shiyou University, Xi'an, Shaanxi, 710065, China.
  • Gao H; College of New Energy, Xi'an Shiyou University, Xi'an, Shaanxi, 710065, China.
  • Jen AK; College of New Energy, Xi'an Shiyou University, Xi'an, Shaanxi, 710065, China.
Small Methods ; : e2400172, 2024 May 29.
Article en En | MEDLINE | ID: mdl-38807542
ABSTRACT
Delicately manipulating nanomorphology is recognized as a vital and effective approach to enhancing the performance and stability of organic solar cells (OSCs). However, the complete removal of solvent additives with high boiling points is typically necessary to maintain the operational stability of the device. In this study, two commercially available organic intermediates, namely thieno[3,2-b]thiophene (TT) and 3,6-dibromothieno[3,2-b]thiophene (TTB) are introduced, as solid additives in OSCs. The theoretical simulations and experimental results indicate that TT and TTB may exhibit stronger intermolecular interactions with the acceptor Y6 and donor PM6, respectively. This suggests that the solid additives (SAs) can selectively intercalate between Y6 and PM6 molecules, thereby improving the packing order and crystallinity. As a result, the TT-treated PM6Y6 system exhibits a favorable morphology, improved charge carrier mobility, and minimal charge recombination loss. These characteristics contribute to an impressive efficiency of 17.75%. Furthermore, the system demonstrates exceptional thermal stability (T80 > 2800 h at 65 °C) and outstanding photostability. The universal applicability of TT treatment is confirmed in OSCs employing D18L8-BO, achieving a significantly higher PCE of 18.3%. These findings underscore the importance of using appropriate solid additives to optimize the blend morphology of OSCs, thereby improving photovoltaic performance and thermal stability.
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Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Idioma: En Revista: Small Methods Año: 2024 Tipo del documento: Article País de afiliación: China

Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Idioma: En Revista: Small Methods Año: 2024 Tipo del documento: Article País de afiliación: China