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Pronounced Dependence of Alla??Polymer Solar Cells Photovoltaic Performance on the Alkyl Substituent Patterns in Large Bandgap Polymer Donors

DOI:10.1002/cphc.202000176 期刊:ChemPhysChem 出版年份:2020 更新时间:2025-09-19 17:13:59
摘要: For all-polymer solar cells which are composed of polymer donors and polymer acceptors, the effect of alkyl side chains on photovoltaic performance is a matter of some debate, and this effect remains difficult to forecast. In this concise contribution, we demonstrate that three alkyls namely branched alkyl 2-butyloctyl (2BO), long linear alkyl n-dodecyl (C12), and double-short linear alkyl n-hexyls (DC6) incorporated into the side chains of large bandgap polymer donor PBDT-TTz can induce considerable, of significance, and different electronic, optical, and morphological parameters. Systematic studies shed light on the critical role of the double-short linear alkyl n-hexyls (DC6) in (i) producing large ionization potential value, (ii) increasing propensity of the polymer to order along the π-stacking direction, (iii) generating polymer crystallites with more preferential “face-on” orientation, consequently, (iv) improvement of carriers transportation, (v) suppression of charge recombination, (vi) reduction of energy loss in all-polymer devices. In parallel, we unearth that the PBDT-TTz with double-short linear alkyl n-hexyls (DC6) represents the highest efficiency of 8.3%, whereas, the other two PBDT-TTz analogues (2BO, C12) yield efficiencies of less than 3% in optimized all-polymer solar cells. Though branched or long linear alkyl side chains (2BO, C12) have been applied to provide the solution processability of conjugated polymers, motifs bearing multiple short linear alkyl substituents (DC6) are proved critical to the development of high performing polymers.
作者: Jiale Chen,Zhixiong Cao,Shengjian Liu,Kexin Liang,Jinhai Liu,Xuechen Jiao,Jiaji Zhao,Qingduan Li,Yue-Peng Cai
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Investigating the effect of alkyl side chains on the photovoltaic performance of all-polymer solar cells composed of polymer donors and polymer acceptors.

The research concludes that the alkyl side chain pattern in polymer donors significantly affects the photovoltaic performance of all-polymer solar cells. Specifically, polymers with double-short linear alkyl n-hexyls (DC6) exhibit higher efficiency due to improved molecular ordering, charge transportation, and reduced recombination losses, achieving a PCE of 8.3%, compared to less than 3% for polymers with bulky or long side chains.

The study focuses on a specific polymer donor system (PBDT-TTz) and a single polymer acceptor (N2200), which may limit the generalizability of the findings to other polymer systems. Additionally, the study does not explore the long-term stability of the solar cells under operational conditions.

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