Chinese Journal of Organic Chemistry ›› 2024, Vol. 44 ›› Issue (2): 525-532.DOI: 10.6023/cjoc202306022 Previous Articles Next Articles
ARTICLES
收稿日期:
2023-06-26
修回日期:
2023-09-25
发布日期:
2023-11-07
基金资助:
Hai Xie(), Yali Zhang, Xiuting Qin, Yongxin Gu()
Received:
2023-06-26
Revised:
2023-09-25
Published:
2023-11-07
Contact:
Supported by:
Share
Hai Xie, Yali Zhang, Xiuting Qin, Yongxin Gu. Synthesis of 1,2,4-Trisubstituted Imidazoles via Sequential Staudinger/aza-Wittig/Aromatization Reaction[J]. Chinese Journal of Organic Chemistry, 2024, 44(2): 525-532.
Compd. | R1 | R2 | R3 | Yielda/% |
---|---|---|---|---|
3a | C6H5 | C6H5 | C6H5 | 88 |
3b | C6H5 | C6H5 | 4-MeC6H4 | 84 |
3c | C6H5 | C6H5 | 4-ClC6H4 | 89 |
3d | C6H5 | C6H5 | 4-BrC6H4 | 81 |
3e | C6H5 | C6H5 | 4-FC6H4 | 90 |
3f | C6H5 | C6H5 | 4-NO2C6H4 | 80 |
3g | C6H5 | 4-ClC6H4 | C6H5 | 86 |
3h | C6H5 | 4-MeC6H4 | C6H5 | 85 |
3i | C6H5 | 2-ClC6H4 | C6H5 | 84 |
3j | C6H5 | 4-ClC6H4 | 4-MeOC6H4 | 83 |
3k | C6H5 | 2-Furyl | C6H5 | 80 |
3l | 4-FC6H4 | C6H5 | 4-MeC6H4 | 86 |
3m | Me | C6H5 | C6H5 | 79 |
Compd. | R1 | R2 | R3 | Yielda/% |
---|---|---|---|---|
3a | C6H5 | C6H5 | C6H5 | 88 |
3b | C6H5 | C6H5 | 4-MeC6H4 | 84 |
3c | C6H5 | C6H5 | 4-ClC6H4 | 89 |
3d | C6H5 | C6H5 | 4-BrC6H4 | 81 |
3e | C6H5 | C6H5 | 4-FC6H4 | 90 |
3f | C6H5 | C6H5 | 4-NO2C6H4 | 80 |
3g | C6H5 | 4-ClC6H4 | C6H5 | 86 |
3h | C6H5 | 4-MeC6H4 | C6H5 | 85 |
3i | C6H5 | 2-ClC6H4 | C6H5 | 84 |
3j | C6H5 | 4-ClC6H4 | 4-MeOC6H4 | 83 |
3k | C6H5 | 2-Furyl | C6H5 | 80 |
3l | 4-FC6H4 | C6H5 | 4-MeC6H4 | 86 |
3m | Me | C6H5 | C6H5 | 79 |
[1] |
Jin Z. Nat. Prod. Rep. 2011, 28, 1143.
doi: 10.1039/c0np00074d |
[2] |
Hoffmann, H.; Lindel, T. Synthesis-stuttgar. 2003, 12, 1753.
|
[3] |
Gaba, M.; Mohan, C. Med. Chem. Res. 2003, 25, 173.
doi: 10.1007/s00044-015-1495-5 |
[4] |
Franchetti, P.; Marchetti, L. S.; Cappaellaci, J. A.; Yalowitz, H. N.; Jayaram, B. M.; Glodstein, M.; Grafantini, A. Bioorg. Med. Chem. Lett. 2001, 11, 67.
pmid: 11140736 |
[5] |
Baraldi, P. G.; Beria, I.; Cozzi, P.; Bianchi, N.; Gambari, R.; Romagnoli, R. Bioorg. Med. Chem. 2003, 11, 965.
|
[6] |
Vlahakis, J. Z.; Kinobe, R. T.; Nakatsu, K.; Szarek, W. A.; Crandall, I. E. Bioorg. Med. Chem. Lett. 2006, 16, 296.
|
[7] |
Lagu, B.; Kluge, A. F.; Tozzo, E.; Fredenburg, R.; Bell, E. L.; Goddeeris, M. M.; Dwyer, P.; Basinski, A.; Senaiar, R. S.; Jaleel, M.; Tiwari, N. K.; Panigrahi, S. K.; Krishnamurthy, N. R.; Takahashi, T.; Patane, M. A. ACS Med. Chem. Lett. 2018, 9, 935.
doi: 10.1021/acsmedchemlett.8b00287 |
[8] |
Zhu, H. Y.; Cooper, A. B.; Desai, J.; Njoroge, G.; Kirschmeier, P.; Bishop, W. R.; Strickland, C.; Hruza, A.; Doll, R. J.; Girijavallabhan, V. M. Bioorg. Med. Chem. Lett. 2010, 20, 1134.
doi: 10.1016/j.bmcl.2009.12.013 |
[9] |
Mishra, R.; Ganguly, S. Med. Chem. Res. 2012, 21, 3929.
doi: 10.1007/s00044-012-9972-6 |
[10] |
Rani, N.; Sharma, A.; Gupta, G. K.; Singh, R. Mini-Rev. Med. Chem. 2013, 13, 1626.
doi: 10.2174/13895575113139990069 |
[11] |
Chen, Y.; Wei, Y. F.; Li, J. X.; Luo, W. Q.; Jin, C. M. Chin. J. Inorg. Chem. 2021, 37, 235 (in Chinese).
|
(陈雨, 卫杨帆, 李嘉欣, 罗文琦, 金传明, 无机化学. 2021, 37, 235.)
|
|
[12] |
Luo, H. B.; Ren, Q.; Wang, P.; Zhang, J.; Wang, L. F.; Ren, X. M. ACS Appl. Mater. Interface. 2019, 11, 9164.
doi: 10.1021/acsami.9b01075 |
[13] |
Ye, Y. X.; Guo, W. G.; Wan, L. H.; Li, Z. Y.; Song, Z. J.; Chen, J.; Zhang, Z. J.; Xiang, S. C.; Chen, B. L. J. Am. Chem. Soc. 2017, 139, 15604.
doi: 10.1021/jacs.7b09163 |
[14] |
Tseng, C. C.; Chen, K. L.; Lee, K. W.; Takayam, H.; Lin, C. Y; Wong, F. F. Prog. Org. Coat. 2019, 127, 385.
|
[15] |
Wang, X. J.; Xu, T.; Duan, H. D. Sens. Actuators. B 2015, 214, 138.
doi: 10.1016/j.snb.2015.03.022 |
[16] |
Cheng, D. D.; Liu, X. L.; Yang, H. Z.; Zhang, T.; Han, A. X.; Zang, L. Sensor. 2017, 17, 35.
doi: 10.3390/s17010035 |
[17] |
Xu, Z. X.; Wang, S. M.; Zhao, L.; Zhang, S. L.; Li, J. B. Chin. J. Org. Chem. 2003, 23, 950 (in Chinese).
|
(许祖勋, 王世敏, 赵雷, 张胜利, 黎俊波, 有机化学. 2003, 23, 950.)
|
|
[18] |
Zhao, Y.; Chen, P. P.; Li, G. N.; Niu, Z. G.; Wang, E. J. Chin. J. Org. Chem. 2023, 43, 2156 (in Chinese).
doi: 10.6023/cjoc202210002 |
(赵洋, 陈盼盼, 李高楠, 钮智刚, 王恩举, 有机化学. 2023, 43, 2156.)
|
|
[19] |
He, Y.; Chai, Y. Q.; Yuan, R.; Wang, H. J.; Bai, L. J.; Cao, Y. L.; Yuan, Y. L. Biosens. Bioelectron. 2013, 50, 294.
doi: 10.1016/j.bios.2013.05.041 |
[20] |
Debus H. Justus Liebigs Ann. Chem. 1858, 107, 199.
doi: 10.1002/jlac.v107:2 |
[21] |
Radzisewski B. Ber. Dtsch. Chem. Ges. 1882, 15, 2706.
doi: 10.1002/cber.v15:2 |
[22] |
Bredereck, H.; Theilig, G. Chem. Ber. 1953, 86, 88.
doi: 10.1002/cber.v86:1 |
[23] |
Gupta, G. K.; Rani, N.; Kumar, V. Mini-Rev. Org. Chem. 2012, 9, 270.
|
[24] |
Patel, S. R.; Patil, R. V.; Chavan, J. U.; Beldar, A. G. Turk. J. Chem. 2022, 46, 624.
doi: 10.55730/1300-0527.3357 |
[25] |
Rani, N.; Kumar, P.; Singh, R.; de Sousa, D. P.; Sharma, P. Curr. Drug Target. 2020, 21, 1130.
doi: 10.2174/1389450121666200530203247 |
[26] |
Kamijo, S.; Yamamoto, Y. Chem.-Asian J. 2007, 2, 568.
doi: 10.1002/asia.v2:5 |
[27] |
Heravi, M. M.; Daraie, M.; Zadsirjan, V. Mol. Diversit. 2015, 19, 577.
|
[28] |
Tolomeu, H. V.; Fraga, C. A. M. Molecule. 2023, 28, 838.
doi: 10.3390/molecules28020838 |
[29] |
Punia, S.; Verma, V.; Kumar, D.; Singh, G.; Sahoo, S. C. Synth. Commun. 2020, 50, 700.
doi: 10.1080/00397911.2020.1712608 |
[30] |
Salfeena, C.T. F.; Jalaja, R.; Davis, R.; Suresh, E.; Somappa, S. B. ACS Omeg. 2018, 3, 807.
|
[31] |
Yu, H. H.; Xiao, L.; Yang, X. C.; Shao, L. M. Chem. Commun. 2017, 53, 9745.
doi: 10.1039/C7CC05315K |
[32] |
Huang, X. S.; Cong, X. F.; Mi, P. B.; Bi, X. H. Chem. Commun. 2017, 53, 3858.
doi: 10.1039/C7CC00772H |
[33] |
Wu, P.; Zhang, L. T.; Zhang, X. G.; Guo, X.; Chen, B. H. Chin. J. Chem. 2016, 34, 363.
doi: 10.1002/cjoc.v34.4 |
[34] |
Cao, J. H.; Zhou, X. Q.; Ma, H. J.; Shi, C.; Huang, G. S. RSC Adv. 2016, 6, s7232.
|
[35] |
Tang, D.; Guo, X.; Wang, Y.; Wang, J.; Li, J. H.; Huang, Q. W.; Chen, B. H. Tetrahedron Lett. 2015, 56, 5982.
doi: 10.1016/j.tetlet.2015.09.034 |
[36] |
Li, Y. X.; Fu, Y. J.; Ren, C. J.; Tang, D.; Wu, P.; Meng, X.; Chen, B. H. Org. Chem. Front. 2015, 2, 1632.
|
[37] |
Liu, X.; Wang, D.; Chen, Y. X.; Tang, D.; Chen, B. H. Adv. Synth. Catal. 2013, 355, 2798.
doi: 10.1002/adsc.v355.14/15 |
[38] |
Xiao, L. W.; Peng, X. X.; Zhou, Q. X.; Kou, W.; Shi, Y. R. Chin. J. Org. Chem. 2015, 35, 1204 (in Chinese).
doi: 10.6023/cjoc201412012 |
(肖立伟, 彭晓霞, 周秋香, 寇伟, 时亚茹, 有机化学. 2015, 35, 1204.)
doi: 10.6023/cjoc201412012 |
|
[39] |
Zhao, M. N.; Yang, Z. M.; Yang, D. S. Chin. J. Org. Chem. 2022, 42, 111 (in Chinese).
doi: 10.6023/cjoc202107014 |
(赵咪娜, 杨梓墨, 杨得锁, 有机化学. 2022, 42, 111.)
doi: 10.6023/cjoc202107014 |
|
[40] |
Staudinger, H.; Meyer, J. Helv. Chim. Act. 1919, 2, 635.
doi: 10.1002/hlca.v2:1 |
[41] |
Palacios, F.; Alonso, C.; Aparicio, D.; Rubiales, G.; Santos, J. M. Tetrahedro. 2007, 63, 523.
doi: 10.1016/j.tet.2006.09.048 |
[42] |
Pedrood, K.; Montazer, M. N.; Larijani, B.; Mahdavi, M. Synthesis-stuttgar. 2021, 53, 2342.
doi: 10.1055/a-1394-7511 |
[43] |
Lao, Z. Q.; Toy, P. H. Beilstein J. Org. Chem. 2016, 12, 2577.
doi: 10.3762/bjoc.12.253 |
[44] |
Lebedev, R.; Dar’in, D.; Kantin, G.; Bakulina, O.; Krasavin, M. Molecule. 2022, 27, 8130.
doi: 10.3390/molecules27238130 |
[45] |
Xie, H.; Hu, Q. Q.; Zhang, Y. L.; Qin, X. T.; Li, L. Curr. Org. Synth. 2023, 20, 589.
doi: 10.2174/1570179420666221006113032 |
[46] |
Xie, H.; Hu, Q. Q.; Qin, X. T.; Liang, J. M.; Li, L.; Zhang, Y. L.; Lu, Z. Heterocycle. 2022, 104, 585.
doi: 10.3987/COM-21-14600 |
[47] |
Xie, H.; Rao, Y.; Ding, M. W. Dyes Pigm. 2017, 139, 440.
doi: 10.1016/j.dyepig.2016.12.040 |
[48] |
Xie, H.; Yuan, D.; Ding, M. W. J. Org. Chem. 2012, 77, 2954.
doi: 10.1021/jo202588j |
[49] |
Xie, H.; Liu, J. C.; Ding, M. W. Synthesi. 2016, 48, 4541.
doi: 10.1055/s-0036-1588308 |
[50] |
Xie, H.; Ding, M. W. Tetrahedro. 2012, 68, 7984.
doi: 10.1016/j.tet.2012.07.002 |
[51] |
McGonagle, F. I.; MacMillan, D. S.; Murray, J.; Sneddon, H. F.; Jamieson, C.; Watson, A. J. B. Green Chem. 2013, 15, 1159.
doi: 10.1039/c3gc40359a |
[52] |
Ding M. W. Sci. Sin. Chim. 2010, 40, 869 (in Chinese).
doi: 10.1360/zb2010-40-7-869 |
(丁明武, 中国科学: 化学. 2010, 40, 869.)
|
|
[53] |
Nie, Y. B.; Duan, Z.; Ding, M. W. Tetrahedro. 2012, 68, 965.
doi: 10.1016/j.tet.2011.12.005 |
[1] | Chujie Liao, Hongyao Ruan, Junfeng Jiang, Lun Luo, Yanggen Hu. Synthesis and Activity Evaluation of 3-Aryl-2-imino-benzo[e][1,3]-oxazin-4-ol Derivatives [J]. Chinese Journal of Organic Chemistry, 2023, 43(2): 763-770. |
[2] | Long Zhao, Maolin Yang, Haoran Chen, Mingwu Ding. One-Pot Three-Component Synthesis of 3,4-Dihydroquinazoline Derivatives [J]. Chinese Journal of Organic Chemistry, 2022, 42(11): 3740-3746. |
[3] | Qiang Yan, Rong Fan, Binbin Liu, Shuaisong Su, Bo Wang, Tuanli Yao, Jiajing Tan. Recent Progress in Aryne Participated Dearomatization Reactions [J]. Chinese Journal of Organic Chemistry, 2021, 41(2): 455-470. |
[4] | Wei Cai, You Huang. Advances in Organophosphorus Redox Catalysis [J]. Chinese Journal of Organic Chemistry, 2021, 41(10): 3903-3913. |
[5] | Chen Feng, Chen Hao, Wu Qing'an, Luo Shuping. Progress on the Photocatalytic Organic Hydrogen-Evolution Coupling/Aromatization Reaction [J]. Chinese Journal of Organic Chemistry, 2020, 40(2): 339-350. |
[6] | Cong Tiantian, Wang Huamin, Liu Yuanyuan, Wu Haihong, Zhang Junliang. Phosphine-Mediated Sequential Staudinger/Aza-Michael Addition of Azides with Unsaturated Ketones to Synthesize β-Amino Substituted Ketones [J]. Chinese Journal of Organic Chemistry, 2019, 39(8): 2157-2165. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||