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Synlett 2025; 36(05): 484-487
DOI: 10.1055/a-2370-6462
DOI: 10.1055/a-2370-6462
letter
Efficient Metal-Free Synthesis of Heterotriarylmethanes by 1,4-Addition of Benzofuran Azadienes
We are grateful for financial support from the National Natural Science Foundation of Shanghai (No. 21ZR1422600), the Natural Science Foundation of Shandong Province (ZR2022MB046), and the Doctoral Program of Liaocheng University (318051516).

Abstract
A novel and efficient method has been established for synthesizing a variety of heterotriarylmethanes with good yields by employing a metal-free self-coupling reaction of benzofuran azadienes. The involvement of t-BuONa is essential in this process. Remarkably, this technique boasts mild reaction conditions and exceptional compatibility with various functional groups, rendering it a versatile and invaluable asset in the realm of organic synthesis.
Supporting Information
- Supporting information for this article is available online at https://doi.org/10.1055/a-2370-6462.
- Supporting Information
Publication History
Received: 10 May 2024
Accepted after revision: 22 July 2024
Accepted Manuscript online:
22 July 2024
Article published online:
13 August 2024
© 2024. Thieme. All rights reserved
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References and Notes
- 1a Farha J, Alzyoud L, Alwahsh M, Al-Omeri B. Cancers 2022; 14: 2196
- 1b Xu Z, Zhao S, Lv Z, Feng L, Wang Y, Zhang F, Bai L, Deng J. Eur. J. Med. Chem. 2019; 162: 266
- 2a Liu Y, Yao B, Deng C.-L, Tang R.-Y, Zhang X.-G, Li J.-H. Org. Lett. 2011; 13: 1126
- 2b Rehan M, Nallagonda R, Das BG, Meena T, Ghorai P. J. Org. Chem. 2017; 82: 3411
- 2c Yamaguchi M, Ozawa H, Katsumata H, Akiyama T, Manabe K. Tetrahedron Lett. 2018; 59: 3175
- 2d Zhou L, Shi Y, Zhu X, Peng Z. Tetrahedron Lett. 2019; 60: 2005
- 2e Fu R, Li Z. Org. Lett. 2018; 20: 2342
- 3a Wang Y.-J, Zhao L.-M. Chem. Eur. J. 2023; 29: e202302111
- 3b Chen J.-T, Lin N, Xu L, Wang Y, Luo X, Liu Y.-Z, Deng W.-P. Org. Chem. Front. 2024; 11: 1299
- 3c Chen Y, Zang M, Wang W, Liu Y.-Z, Luo X, Deng W.-P. Chin. J. Chem. 2023; 41: 2825
- 3d Li L, Liu T, Ren W, Wang Y. Green Synth. Catal. 2024; 5: 57
- 4a Huang Y, Tan M, Wang N, Zhang Y, Yao H, Huang N, Zou K. J. Org. Chem. 2023; 88: 13030
- 4b Khuntia R, Mahapatra SK, Roy L, Pan SC. Chem. Sci. 2023; 14: 10768
- 4c Shi W, Ren Y, Zhao H, Tang Y, Piao S, Mao B, Wang W, Wu Y, Wang B, Guo H. Org. Lett. 2022; 24: 3747
- 4d Zhang W, Wei X, Wang Y, Huang Y, Nawaz S, Qu J, Wang B. Org. Chem. Front. 2022; 9: 5197
- 4e Yang L, Pi C, Wu Y, Cui X. Org. Lett. 2022; 24: 7502
- 4f Ni H, Tang X, Zheng W, Yao W, Ullah N, Lu Y. Angew. Chem. Int. Ed. 2017; 56: 14222
- 5 Wang Y.-N, Yang L.-C, Rong Z.-Q, Liu T.-L, Liu R, Zhao Y. Angew. Chem. Int. Ed. 2018; 57: 1596
- 6 Fan T, Zhang Z.-J, Zhang Y.-C, Song J. Org. Lett. 2019; 21: 7897
- 7 Al-Qawasmeh RA, Lee Y, Cao M.-Y, Gu X, Vassilakos A, Wright JA, Young A. Bioorg. Med. Chem. Lett. 2004; 14: 347
- 8a Shi B.-F, Maugel N, Zhang Y.-H, Yu J.-Q. Angew. Chem. 2008; 120: 4960
- 8b Gong Y.-X, Wu Q, Zhang H.-H, Zhu Q.-N, Shi F. Org. Biomol. Chem. 2015; 13: 7993
- 9 Huang W.-J, Ma Y.-Y, Liu L.-X, Wu B, Jiang G.-F, Zhou Y.-G. Org. Lett. 2021; 23: 2393
- 10 Lu Z.-y, Hu J.-t, Lan W.-q, Mo X.-q, Zhou S, Tang Y.-f, Yuan W.-c, Zhang X.-m, Liao L.-h. Tetrahedron Lett. 2021; 67: 152862
- 11 CCDC 2327026 contains the supplementary crystallographic data for compound 2a. The data can be obtained free of charge from The Cambridge Crystallographic Data Centre via www.ccdc.cam.ac.uk/structures
- 12a Kótai B, Kardos G, Hamza A, Farkas V, Pápai I, Soós T. Chem. Eur. J. 2014; 20: 5631
- 12b Grayson M.-N, Houk K.-N. J. Am. Chem. Soc. 2016; 138: 9041
- 13 See the Supporting Information.
- 14 N,N′-[(Phenylmethylene)bis(1-benzofuran-2,3-diyl)]bis(4-methylbenzenesulfonamide) (2a); Typical Procedure A mixture of 1a (1.0 equiv; 0.2 mmol), t-BuONa (1.0 equiv; 0.2 mmol), and THF (1.0 mL) was kept at 60 °C for 12 h. The mixture was then directly purified by flash column chromatography [silica gel, EtOAc–PE (1:2)] to give a yellow solid; yield: 59.6 mg (90%); mp 95 °C. IR (KBr): 2921, 1451, 1152, 664, 542 cm–1. 1H NMR (500 MHz, CDCl3): δ = 7.72 (d, J = 8.0 Hz, 4 H), 7.41 (d, J = 8.5 Hz, 2 H), 7.22 (m, 2 H), 7.18 (d, J = 8.0 Hz, 1 H), 7.16–7.11 (m, 7 H), 7.10 (d, J = 6.0 Hz, 1 H), 7.09–7.05 (m, 4 H), 6.69 (d, J = 7.5 Hz, 2 H), 5.68 (s, 1 H), 2.32 (s, 6 H). 13C {1H} NMR (126 MHz, CDCl3): δ = 153.6, 151.5, 144.1, 136.3, 129.8, 128.2, 127.9, 127.6, 127.2, 126.4, 125.4, 124.9, 123.2, 119.5, 114.7, 111.8, 38.2, 21.5. HRMS (ESI-TOF): m/z [M + H]+ calcd for C37H31N2O6S2: 663.1618; found: 663.1623.