9. Noyori R (2002) Angew Chem Int Ed 41:2008–2022
10. Crispino GA, Ho PT, Sharpless KB (1993) Science 259:64–66
11. Yamakawa M, Yamada I, Noyori R (2001) Angew Chem Int Ed 40:2818–2821
12. Drudis-Solé G, Ujaque G, Maseras F, Lledós A (2005) Chem A Eur J 11:1017–1029
13. Norrby P-O, Rasmussen T, Haller J, Strassner T, Houk KN (1999) J Am Chem Soc
121:10186–10192
14. Hopmann KH (2015) Int J Quantum Chem 115:1232–1249
15. Yoon TP, Jacobsen EN (2003) Science 299:1691–1693
16. Berthod M, Mignani G, Woodward G, Lemaire M (2005) Chem Rev 105:1801–1836
17. Paquette LA (1999) Chiral reagents for asymmetric synthesis. Wiley, New York
18. Seebach D, Beck AK, Heckel A (2001) Angew Chem Int Ed 40:92–138
19. Desimoni G, Faita G, Jørgensen KA (2006) Chem Rev 106:3561–3651. https://doi.org/10.
1021/cr0505324
20. Burk MJ (1991) J Am Chem Soc 113:8518–8519
21. Blaser H-U, Brieden W, Pugin B et al (2002) Top Catal 19:3–16
22. Reetz MT, Li X (2006) J Am Chem Soc 128:1044–1045
23. Trost BM, Fandrick DR (2007) Aldrichimica Acta 40:59
24. Zhang W et al (2007) Acc Chem Res 40:1278
25. Feringa BL (2000) Acc Chem Res 33:346–353
26. Teichert JF, Feringa BL (2010) Angew Chem Int Ed 49:2486–2528
27. Ardkhean R, Roth PMC, Maksymowicz RM et al (2017) ACS Catal 7:6729–6737
28. Ardkhean R, Mortimore M, Paton RS, Fletcher SP (2018) Chem Sci 9:2628–2632
29. Brethomé A, Paton R, Fletcher SP (2019) ACS Catal 9:7179–7187
30. Diéguez M, Pàmies O, Claver C (2004) Chem Rev 104:3189–3216
31. McNally A, Prier CK, MacMillan DWC (2011) Science 334:1114–1117
32. Lefort L, Boogers JAF, de Vries AHM, de Vries JG (2004) Org Lett 6:1733–1735
33. Jagt RBC, Toullec PY, Schudde EP et al (2007) J Comb Chem 9:407–414
34. Barhate CL, Joyce LA, Makarov AA et al (2017) Chem Commun 53:509–512
35. Jo HH, Lin C-Y, Anslyn EV (2014) Acc Chem Res 47:2212–2221
36. Herrera BT, Pilicer SL, Anslyn EV et al (2018) J Am Chem Soc 140:10385–10401
37. Shcherbakova EG, Brega V, Minami T et al (2016) Chem A Eur J 22:10074–10080
38. Zhao Y, Swager TM (2015) J Am Chem Soc 137:3221–3224
39. Feagin TA, Olsen DPV, Headman ZC, Heemstra JM (2015) J Am Chem Soc 137:4198–4206
40. Houk KN, Cheong PH-Y (2008) Nature 455:309–313
41. Peng Q, Duarte F, Paton RS (2016) Chem Soc Rev 45:6093–6107
42. Brown JM, Deeth RJ (2009) Angew Chem Int Ed 48:4476–4479
43. Cheng G-J, Zhang X, Chung LW et al (2015) J Am Chem Soc 137:1706–1725
44. Hansen E, Rosales AR, Tutkowski B et al (2016) Acc Chem Res 49:996–1005
45. Schneebeli ST, Hall ML, Breslow R, Friesner R (2009) J Am Chem Soc 131:3965–3973
46. Straker RN, Peng Q, Mekareeya A et al (2016) Nat Commun 7:1–9
47. Burrows LC, Jesikiewicz LT, Lu G, Geib SJ, Liu P, Brummond KM (2017) J Am Chem Soc
139:15022–15032
48. Guan Y, Wheeler SE (2017) Angew Chem Int Ed 56:9101–9105
49. Bo C, Maseras F (2008) Dalton Trans:2911–2919
50. Donoghue PJ, Helquist P, Norrby P-O, Wiest O (2009) J Am Chem Soc 131:410–411
51. Rosales AR, Wahlers J, Limé E et al (2019) Nat Catal 2:41–45
52. Tropsha A (2010) Mol Inform 29:476–488
53. Hammett LP (1935) Chem Rev 17:125–136
54. Dearden JC, Cronin MTD, Kaiser KLE (2009) SAR QSAR Environ Res 20:241–266
55. Santiago CB, Guo J-Y, Sigman MS (2018) Chem Sci 9:2398–2412
56. Zahrt AF, Athavale SV, Denmark SE (2020) Chem Rev 120:1620–1689
Ligand Design for Asymmetric Catalysis: Combining Mechanistic and. . .
187
Précédent

- 195/276

Suivant