Acta Chimica Sinica ›› 2021, Vol. 79 ›› Issue (7): 908-913.DOI: 10.6023/A21050211 Previous Articles Next Articles
Communication
投稿日期:
2021-05-13
发布日期:
2021-06-30
通讯作者:
李兴
基金资助:
Yongsheng Fang, Wenhui Li, Jianying Lin, Xing Li()
Received:
2021-05-13
Published:
2021-06-30
Contact:
Xing Li
Supported by:
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Yongsheng Fang, Wenhui Li, Jianying Lin, Xing Li. Different Bonds Cleavage of Arenesulfonates: Access to Diverse Aryl Ethers[J]. Acta Chimica Sinica, 2021, 79(7): 908-913.
Entry | Solvent/mL | Base/equiv. | T/℃ | Yield b/% |
---|---|---|---|---|
1c | CH3CN (0.5) | CsF (2.0) | 65 | 41 |
2c | DMF (0.5) | CsF (2.0) | 65 | 38 |
3c | Toluene (0.5) | CsF (2.0) | 65 | 19 |
4 | C2H5OH (0.5) | CsF (2.0) | 65 | 49 |
5 | C2H5OH (0.5) | K3PO4 (2.0) | 65 | 65 |
6 | C2H5OH (0.5) | K2CO3 (2.0) | 65 | 86 |
7 | C2H5OH (0.5) | t-BuOK (2.0) | 65 | 51 |
8 | C2H5OH (0.5) | KOH (2.0) | 65 | 41 |
9 | C2H5OH (0.5) | K2CO3 (1.5) | 65 | 77 |
10 | C2H5OH (0.5) | K2CO3 (2.5) | 65 | 81 |
11 | C2H5OH (0.5) | K2CO3 (2.0) | 55 | 73 |
12 | C2H5OH (0.5) | K2CO3 (2.0) | 75 | 66 |
13 | C2H5OH (1.0) | K2CO3 (2.0) | 65 | 75 |
14 | C2H5OH (1.5) | K2CO3 (2.0) | 65 | 72 |
Entry | Solvent/mL | Base/equiv. | T/℃ | Yield b/% |
---|---|---|---|---|
1c | CH3CN (0.5) | CsF (2.0) | 65 | 41 |
2c | DMF (0.5) | CsF (2.0) | 65 | 38 |
3c | Toluene (0.5) | CsF (2.0) | 65 | 19 |
4 | C2H5OH (0.5) | CsF (2.0) | 65 | 49 |
5 | C2H5OH (0.5) | K3PO4 (2.0) | 65 | 65 |
6 | C2H5OH (0.5) | K2CO3 (2.0) | 65 | 86 |
7 | C2H5OH (0.5) | t-BuOK (2.0) | 65 | 51 |
8 | C2H5OH (0.5) | KOH (2.0) | 65 | 41 |
9 | C2H5OH (0.5) | K2CO3 (1.5) | 65 | 77 |
10 | C2H5OH (0.5) | K2CO3 (2.5) | 65 | 81 |
11 | C2H5OH (0.5) | K2CO3 (2.0) | 55 | 73 |
12 | C2H5OH (0.5) | K2CO3 (2.0) | 75 | 66 |
13 | C2H5OH (1.0) | K2CO3 (2.0) | 65 | 75 |
14 | C2H5OH (1.5) | K2CO3 (2.0) | 65 | 72 |
[1] |
(a) Tanaka, H.; Sawayama, A. M.; Wandless, T. J. J. Am. Chem. Soc. 2003, 125, 6864.
doi: 10.1021/ja035429f pmid: 21504168 |
(b) Deng, H.; Jung, J.-K.; Liu, T.; Kuntz, K. W.; Snapper, M. L.; Hoveyda, A. H. J. Am. Chem. Soc. 2003, 125, 9032.
doi: 10.1021/ja030249r pmid: 21504168 |
|
(c) Roughley, S. D.; Jordan, A. M. J. Med. Chem. 2011, 54, 3451.
doi: 10.1021/jm200187y pmid: 21504168 |
|
(d) Zhao, X.; Ding, T.; Jiang, L.; Yi, W. Acta Chim. Sinica 2019, 77, 1263. (in Chinese)
doi: 10.6023/A19090325 pmid: 21504168 |
|
(赵小淳, 丁天琪, 蒋绿齐, 易文斌, 化学学报, 2019, 77, 1263.)
doi: 10.6023/A19090325 pmid: 21504168 |
|
(e) Zhang, S.; Li, Y.; Tong, L.; Lu, G.; Huang, X. Acta Chim. Sinica 2009, 67, 425. (in Chinese)
pmid: 21504168 |
|
(张森, 李永军, 童亮, 陆国林, 黄晓宇, 化学学报, 2009, 67, 425.)
pmid: 21504168 |
|
(f) Lü, X.; He, C.; Li, Y.; Jia, Q.; Gong, C. Acta Chim. Sinica 2010, 68, 697. (in Chinese)
pmid: 21504168 |
|
(吕绪良, 何超, 李功垚, 贾其, 宫长青, 化学学报, 2010, 68,697.)
pmid: 21504168 |
|
For a review, see: (g) Pitsinos, E. N.; Vidali, V. P.; Couladouros, E. A. Eur. J. Org. Chem. 2011,1207.
pmid: 21504168 |
|
[2] |
(a) Fuhrmann, E.; Talbiersky, J. Org. Process Res. Dev. 2005, 9, 206.
doi: 10.1021/op050001h |
(b) Juršić, B. Tetrahedron 1988, 44, 6677.
doi: 10.1016/S0040-4020(01)90106-1 |
|
(c) Massah, A. R.; Mosharafian, M.; Momeni, A. R.; Aliyan, H.; Naghash, H. J. Synth. Commun. 2007, 37, 1807.
doi: 10.1080/00397910701316268 |
|
(d) Wang, X.; Qu, Y.; Long, C.; Wang, X.-Q. Chin. J. Org. Chem. 2021, 41, 795. (in Chinese)
doi: 10.6023/cjoc202006077 |
|
(王霞, 屈益欣, 龙城宇, 王雪强, 有机化学, 2021, 41, 795.)
doi: 10.6023/cjoc202006077 |
|
[3] |
Selected examples: (a) Henderson, A. S.; Medina, S.; Bower, J. F.; Galan, M. C. Org. Lett. 2015, 17, 4846.
doi: 10.1021/acs.orglett.5b02413 |
(b) Engle, K. M.; Luo, S.-X.; Grubbs, R. H. J. Org. Chem. 2015, 80, 4213.
doi: 10.1021/acs.joc.5b00563 |
|
(c) Kim, A.; Powers, J. D.; Toczko, J. F. J. Org. Chem. 2006, 71, 2170.
doi: 10.1021/jo0523868 |
|
[4] |
Selected examples: (a) Swamy, K. C. K.; Kumar, N. N. B.; Balaraman, E.; Kumar, K. V. P. P. Chem. Rev. 2009, 109, 2551.
doi: 10.1021/cr800278z pmid: 27586361 |
(b) Renaudet, O.; Reymond, J.-L. Org. Lett. 2004, 6, 397.
pmid: 27586361 |
|
(c) Shintou, T.; Mukaiyama, T. J. Am. Chem. Soc. 2004, 126, 7359.
pmid: 27586361 |
|
(d) Shen, X.; Neumann, C. N.; Kleinlein, C.; Goldberg, N. W.; Ritter, T. Angew. Chem., Int. Ed. 2015, 54, 5662.
doi: 10.1002/anie.201500902 pmid: 27586361 |
|
(e) Lindstedt, E.; Stridfeldt, E.; Olofsson, B. Org. Lett. 2016, 18, 4234.
doi: 10.1021/acs.orglett.6b01975 pmid: 27586361 |
|
[5] |
Selected examples: (a) Cano, R.; Ramón, D. J.; Yus, M. J. Org. Chem. 2011, 76, 654.
doi: 10.1021/jo1022052 |
(b) Yuan, Y.; Thomé, I.; Kim, S. H.; Chen, D.; Beyer, A.; Bonnamour, J.; Zuidema, E.; Chang, S.; Bolm, C. Adv. Synth. Catal. 2010, 352, 2892.
doi: 10.1002/adsc.v352.17 |
|
(c) Dong, Y.; Lipschutz, M. I.; Tilley, T. D. Org. Lett. 2016, 18, 1530.
doi: 10.1021/acs.orglett.6b00183 |
|
[6] |
(a) Cazorla, C.; Pfordt, É.; Duclos, M.-C.; Métay, E.; Lemaire, M. Green Chem. 2011, 13, 2482.
doi: 10.1039/c1gc15481h |
(b) Oku, T.; Arita, Y.; Ikariya, T. Adv. Synth. Catal. 2005, 347, 1553.
doi: 10.1002/(ISSN)1615-4169 |
|
(c) Barluenga, J.; Tomás-Gamasa, M.; Aznar, F.; Valdés, C. Angew. Chem., Int. Ed. 2010, 49, 4993.
doi: 10.1002/anie.v49:29 |
|
[7] |
Selected examples: (a) Lindstedt, E.; Ghosh, R.; Olofsson, B. Org. Lett. 2013, 15, 6070.
doi: 10.1021/ol402960f pmid: 24228788 |
(b) Sundalam, S. K.; Stuart, D. R. J. Org. Chem. 2015, 80, 6456.
doi: 10.1021/acs.joc.5b00907 pmid: 24228788 |
|
[8] |
Selected examples: (a) Jalalian, N.; Petersen, T. B.; Olofsson, B. Chem. Eur. J. 2012, 18, 14140.
doi: 10.1002/chem.v18.44 pmid: 21319835 |
(b) Jalalian, N.; Ishikawa, E. E.; Silva Jr., L. F.; Olofsson, B. Org. Lett. 2011, 13, 1552.
doi: 10.1021/ol200265t pmid: 21319835 |
|
(c) Liu, F.; Yang, H.; Hu, X.; Jiang, G. Org. Lett. 2014, 16, 6408.
doi: 10.1021/ol503224u pmid: 21319835 |
|
(d) Malmgren, J.; Santoro, S.; Jalalian, N.; Himo, F.; Olofsson, B. Chem. Eur. J. 2013, 19, 10334. For a review, see:.
doi: 10.1002/chem.201300860 pmid: 21319835 |
|
(e) Merritt, E. A.; Olofsson, B. Angew. Chem., Int. Ed. 2009, 48, 9052.
doi: 10.1002/anie.v48:48 pmid: 21319835 |
|
[9] |
(a) Liu, Z.; Larock, R. C. J. Org. Chem. 2006, 71, 3198.
doi: 10.1021/jo0602221 pmid: 28984457 |
(b) Liu, Z.; Larock, R. C. Org. Lett. 2004, 6, 99.
doi: 10.1021/ol0361406 pmid: 28984457 |
|
(c) Matsuzawa, T.; Uchida, K.; Yoshida, S.; Hosoya, T. Org. Lett. 2017, 19, 5521.
doi: 10.1021/acs.orglett.7b02599 pmid: 28984457 |
|
[10] |
Selected examples: (a) Choi, Y. L.; Lim, H. S.; Lim, H. J.; Heo, J.-N. Org. Lett. 2012, 14, 5102.
doi: 10.1021/ol302371s pmid: 16018650 |
(b) Hçfling, S. B.; Bartuschat, A. L.; Heinrich, M. R. Angew. Chem., Int. Ed. 2010, 49, 9769.
doi: 10.1002/anie.201004508 pmid: 16018650 |
|
(c) Lee, J.-K.; Fuchter, M. J.; Williamson, R. M.; Leeke, G. A.; Bush, E. J.; McConvey, I. F.; Saubern, S.; Ryan, J. H.; Holmes, A. B. Chem. Commun. 2008,4780.
pmid: 16018650 |
|
(d) Urgaonkar, S.; Verkade, J. G. Org. Lett. 2005, 7, 3319.
pmid: 16018650 |
|
(e) Wipf, P.; Lynch, S. M. Org. Lett. 2003, 5, 1155.
doi: 10.1021/ol034286z pmid: 16018650 |
|
(f) Li, F.; Wang, Q.; Ding, Z.; Tao, F. Org. Lett. 2003, 5, 2169.
doi: 10.1021/ol0346436 pmid: 16018650 |
|
(g) Drapeau, M. P.; Ollevier, T.; Taillefer, M. Chem. Eur. J. 2014, 20, 5231.
doi: 10.1002/chem.v20.18 pmid: 16018650 |
|
(h) Jasch, H.; Höfling, S. B.; Heinrich, M. R. J. Org. Chem. 2012, 77, 1520.
doi: 10.1021/jo202406k pmid: 16018650 |
|
[11] |
Kokatla, H. P.; Lakshman, M. K. Org. Lett. 2010, 12, 4478.
doi: 10.1021/ol101655h pmid: 20845979 |
[12] |
Saitoh, T.; Ichikawa, J. J. Am. Chem. Soc. 2005, 127, 9696.
doi: 10.1021/ja051839n |
[13] |
The examples for the formation of C―C bond via the C―S cleavage of alkyl arenesulfonates, See: (a) Cho, C.-H.; Yun, H.-S.; Park, K. J. Org. Chem. 2003, 68, 3017.
doi: 10.1021/jo026449n |
(b) Cho, C.-H.; Sun, M.; Seo, Y.-S.; Kim, C.-B.; Park, K. J. Org. Chem. 2005, 70, 1482.
doi: 10.1021/jo048300c |
|
(c) Kim, C.-B.; Jo, H.; Ahn, B.-K.; Kim, C. K.; Park, K. J. Org. Chem. 2009, 74, 9566.
doi: 10.1021/jo902151h |
|
(d) Nacsa, E. D.; Lambert, T. H. Org. Chem. Front. 2018, 5, 64.
doi: 10.1039/C7QO00731K |
|
[14] |
Chen, X.; Xiao, X.; Sun, H.; Li, Y.; Cao, H.; Zhang, X.; Yang, S.; Lian, Z. Org. Lett. 2019, 21, 8879.
doi: 10.1021/acs.orglett.9b02858 |
[15] |
Sach, N. W.; Richter, D. T.; Cripps, S.; Tran-Dubé, M.; Zhu, H.; Huang, B.; Cui, J.; Sutton, S. C. Org. Lett. 2012, 14, 3886.
doi: 10.1021/ol301615z |
[16] |
(a) Dinsmore, C. J.; Zartman, C. B. Tetrahedron Lett. 1999, 40, 3989.
doi: 10.1016/S0040-4039(99)00660-7 |
(b) Xu, H.; Chen, Y. Molecules 2007, 12, 861.
doi: 10.3390/12040861 |
|
(c) Cui, S.-L.; Jiang, Z.-Y.; Wang, Y.-G. Synlett 2004,1829.
|
|
(d) Neuville, L.; Bigot, A.; Dau, M. E. T. H.; Zhu, J. J. Org. Chem. 1999, 64, 7638.
doi: 10.1021/jo990559l |
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