S-9
 
 O=C(N(C(CCCC)CCCC)C7=O)C2=CC=C(C4=CC=C6C5=C(C(N(C(CCCC)CCCC)C6=O)=O)C=CC3=C45)C1=C3C=CC7=C12

N,N‘-Bis(1-butylpentyl)-3,4:9,10-perylenebis(dicarboximide); 2,9-bis-(1-butylpentyl)anthra[2,1,9-def;6,5,10-d‘e‘f‘]diisoquinoline-1,3,8,10(2H,9H)-tetraone; 2,9-bis-(5-nonyl)anthra[2,1,9-def;6,5,10-d‘e‘f‘]diisoquinoline-1,3,8,10(2H,9H)-tetraone, RN 110613-98-4:
M.p. 268°C, bright red crystals. UV (CHCl3): λmax (ε) = 458 nm (18660), 488.5 (51640), 524.5 (85510). C42H46N2O4 (642.8) calcd. C 78.47, H 7.21, N 4.36; found C 78.58, H 7.13, N 4.18.


References, RN 110613-98-4:

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19. Savoie, B. M.; Kohlstedt, K. L.; Jackson, N. E.; Chen, Lin X.; de la Cruz, M. O.; Schatz, G. C.; Marks, T. J.; Ratner, M. A. ‘Mesoscale molecular network formation in amorphous organic materials’, Proceedings of the National Academy of Sciences of the United States of America 2014, 111, 10055-10060.

20. Madhurima, V.; Priyanka, K. Greeshma; Pavan, K. S. N. D.; Nagarajan, S. ‘Analysis of wetting of perylene diimide thin films-on-glass by water’, Key Engineering Materials 2014, 594-595(Advanced Materials Engineering and Technology II, 1074-1077.

21. Boobalan, G.; Imran, P. K. M.; Manoharan, C.; Nagarajan, S. ‘Optical and electrical properties of new perylene diimide thin films’, J. Electronic Materials 2015, 44, 4000-4005.

22. Gao, Deqing; Chen, Naiwu; Zhu, Jie; Zheng, Chaoyue; Wu, Huarui; Huang, Wei ‘Preparing method of electron/hole double-channel polymer material, and application thereof in organic solar cell’, Faming Zhuanli Shenqing 2016, CN 105669953 A 20160615.

23. Fu, Huiting; Meng, Dong; Meng, Xiangyi; Sun, Xiaobo; Huo, Lijun; Fan, Yuzun; Li, Yan; Ma, Wei; Sun, Yanming; Wang, Zhaohui ‘Influence of alkyl chains on photovoltaic properties of 3D rylene propeller electron acceptors’, J. Materials Chemistry A: Materials for Energy and Sustainability 2017, 5, 3475-3482.

24. Chen, Naiwu; Lu, Jurong; Wang, Danbei; Zheng, Chaoyue; Wu, Huarui; Zhang, Hongmei; Gao, Deqing ‘A double-cable poly(fluorene-alt-thiophene) with bay-substituted perylenediimide pendants: An efficient interfacial material in bulk-heterojunction solar cells’, Macromolecules (Washington, DC, United States) 2018, 51, 80-90.


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