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タイトル: cis-1 Isomers of tethered bismethano[70]fullerene as electron acceptors in organic photovoltaics
著者: Umeyama, Tomokazu
Takahara, Shogo
Shibata, Sho
Igarashi, Kensho
Higashino, Tomohiro  kyouindb  KAKEN_id  orcid https://orcid.org/0000-0002-9531-8569 (unconfirmed)
Mishima, Kenji
Yamashita, Koichi
Imahori, Hiroshi  kyouindb  KAKEN_id
著者名の別形: 梅山, 有和
五十嵐, 健翔
東野, 智洋
今堀, 博
発行日: 2018
出版者: Royal Society of Chemistry (RSC)
誌名: RSC Advances
巻: 8
号: 33
開始ページ: 18316
終了ページ: 18326
抄録: Isomer-controlled [70]fullerene bis-adducts can achieve high performance as electron-acceptors in organic photovoltaics (OPVs) because of their stronger absorption intensities than [60]fullerene derivatives, higher LUMO energy levels than mono-adducts, and less structural and energetic disorder than random isomer mixtures. Especially, attractive are cis-1 isomers that have the closest proximity of addends owing to their plausible more regular close packed structure. In this study, propylene-tethered cis-1 bismethano[70]fullerene with two methyl, ethyl, phenyl, or thienyl groups were rationally designed and prepared for the first time to investigate the OPV performances with an amorphous conjugated polymer donor (PCDTBT). The cis-1 products were found to be a mixture of two regioisomers, α-1-α and α-1-β as major and minor components, respectively. Among them, the cis-1 product with two ethyl groups (Et2-cis-1-[70]PBC) showed the highest OPV performance, encouraging us to isolate its α-1-α isomer (Et2-α-1-α-[70]PBC) by high-performance liquid chromatography. OPV devices based on Et2-cis-1-[70]PBC and Et2-α-1-α-[70]PBC with PCDTBT showed open-circuit voltages of 0.844 V and 0.864 V, respectively, which were higher than that of a device with typical [70]fullerene mono-adduct, [70]PCBM (0.831 V) with a lower LUMO level. However, the short-circuit current densities and resultant power conversion efficiencies of the devices with Et2-cis-1-[70]PBC (9.24 mA cm−2, 4.60%) and Et2-α-1-α-[70]PBC (6.35 mA cm−2, 3.25%) were lower than those of the device with [70]PCBM (10.8 mA cm−2, 5.8%) due to their inferior charge collection efficiencies. The results obtained here reveal that cis-1 [70]fullerene bis-adducts do not guarantee better OPV performance and that further optimization of the substituent structures is necessary.
著作権等: This journal is © The Royal Society of Chemistry 2018. This Open Access Article is licensed under a Creative Commons Attribution-Non Commercial 3.0 Unported Licence.
URI: http://hdl.handle.net/2433/234973
DOI(出版社版): 10.1039/c8ra02896f
PubMed ID: 35541128
出現コレクション:学術雑誌掲載論文等

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