1 3
Topics in Current Chemistry (2019) 377:23
43. Rong Z-Q, Zhang Y, Chua RHB, Pan H-J, Zhao Y (2015) J Am Chem Soc 137:4944–4947
44. Han Z-Y, Xiao H, Chen X-H, Gong L-Z (2009) J Am Chem Soc 131:9182–9183
45. Liu X-Y, Che C-M (2009) Org Lett 11:4204–4207
46. Muratore ME, Holloway CA, Pilling AW, Storer RI, Trevitt G, Dixon DJ (2009) J Am Chem Soc
131:10796–10797
47. Hamilton GL, Kang EJ, Mba M, Toste FD (2007) Science 317:496
48. Zbieg JR, Yamaguchi E, McInturff EL, Krische MJ (2012) Science 336:324–327
49. Cai Q, Zhao Z-A, You S-L (2009) Angew Chem Int Ed 48:7428–7431
50. Sorimachi K, Terada M (2008) J Am Chem Soc 130:14452–14453
51. Komanduri V, Krische MJ (2006) J Am Chem Soc 128:16448–16449
52. Pellissier H (2019) Coord Chem Rev 386:1–31
53. Yu P, Lin J-S, Li L, Zheng S-C, Xiong Y-P, Zhao L-J, Tan B, Liu X-Y (2014) Angew Chem Int Ed
53:11890–11894
54. Rauniyar V, Wang ZJ, Burks HE, Toste FD (2011) J Am Chem Soc 133:8486–8489
55. Ren L, Lei T, Ye J-X, Gong L-Z (2012) Angew Chem Int Ed 51:771–774
56. Chen L, Zhang L, Lv J, Cheng J-P, Luo S (2012) Chem Eur J 18:8891–8895
57. Mori K, Isogai R, Kamei Y, Yamanaka M, Akiyama T (2018) J Am Chem Soc 140:6203–6207
58. Hatano M, Moriyama K, Maki T, Ishihara K (2010) Angew Chem Int Ed 49:3823–3826
59. Alix A, Lalli C, Retailleau P, Masson G (2012) J Am Chem Soc 134:10389–10392
60. Domżalska A, Ulikowski A, Furman B (2017) Alkaline earth metal based chiral lewis acids. In: Mlynarski J (ed) Chiral Lewis acids in organic synthesis. Wiley-VCH, Weinheim, pp 1–23 https ://doi.
org/10.1002/97835 27802 142.ch1
61. Lv J, Zhang L, Luo S, Cheng J-P (2013) Angew Chem Int Ed 52:9786–9790
62. Wang L, Lv J, Zhang L, Luo S (2017) Angew Chem Int Ed 56:10867–10871
63. Chirik P, Morris R (eds) (2015) Special Issue: Earth abundant metals in homogeneous catalysis. Acc
Chem Res 48:(whole issue)
64. Egorova KS, Ananikov VP (2016) Angew Chem Int Ed 55:12150–12162
65. Alig L, Fritz M, Schneider S (2019) Chem Rev 119:2681–2751
66. Crossley SWM, Obradors C, Martinez RM, Shenvi RA (2016) Chem Rev 116:8912–9000
67. Pellissier H, Clavier H (2014) Chem Rev 114:2775–2823
68. Bauer I, Knölker H-J (2015) Chem Rev 115:3170–3387
69. Tzouras NV, Stamatopoulos IK, Papastavrou AT, Liori AA, Vougioukalakis GC (2017) Coord Chem
Rev 343:25–138
70. Chirik P, Morris R (2015) Acc Chem Res 48:2495
71. Choi J, Fu GC (2017) Science 356:7230–7239
72. Wang F, Chen P, Liu G (2018) Acc Chem Res 51:2036–2046
73. Kainz QM, Matier CD, Bartoszewicz A, Zultanski SL, Peters JC, Fu GC (2016) Science 351:681
74. Fischer C, Fu GC (2005) J Am Chem Soc 127:4594–4595
75. Son S, Fu GC (2008) J Am Chem Soc 130:2756–2757
76. Schley ND, Fu GC (2014) J Am Chem Soc 136:16588–16593
77. Tasker SZ, Standley EA, Jamison TF (2014) Nature 509:299
78. Liao S, List B (2010) Angew Chem Int Ed 49:628–631
79. McGarrigle EM, Gilheany DG (2005) Chem Rev 105:1563–1602
80. Merten C, Pollok CH, Liao S, List B (2015) Angew Chem Int Ed 54:8841–8845
81. Gebauer K, Reuß F, Spanka M, Schneider C (2017) Org Lett 19:4588–4591
82. El-Sepelgy O, Haseloff S, Alamsetti SK, Schneider C (2014) Angew Chem Int Ed 53:7923–7927
83. Chen X, Jiang H, Hou B, Gong W, Liu Y, Cui Y (2017) J Am Chem Soc 139:13476–13482
84. Liao S, List B (2012) Adv Synth Catal 354:2363–2367
85. Narute S, Parnes R, Toste FD, Pappo D (2016) J Am Chem Soc 138:16553–16560
86. Narute S, Pappo D (2017) Org Lett 19:2917–2920
87. Morris RH (2016) Chem Rev 116:8588–8654
88. Zhang Z, Butt NA, Zhou M, Liu D, Zhang W (2018) Chin J Chem 36:443–454
89. Quintard A, Rodriguez J (2014) Angew Chem Int Ed 53:4044–4055
90. Zhou S, Fleischer S, Junge K, Beller M (2011) Angew Chem Int Ed 50:5120–5124
91. Zhou S, Fleischer S, Jiao H, Junge K, Beller M (2014) Adv Synth Catal 356:3451–3455
92. Fleischer S, Werkmeister S, Zhou S, Junge K, Beller M (2012) Chem Eur J 18:9005–9010
93. Fleischer S, Zhou S, Werkmeister S, Junge K, Beller M (2013) Chem Eur J 19:4997–5003
94. Hopmann KH (2015) Chem Eur J 21:10020–10030
95. Lu L-Q, Li Y, Junge K, Beller M (2015) J Am Chem Soc 137:2763–2768
Reprinted from the journal
183
Topics in Current Chemistry (2019) 377:23
43. Rong Z-Q, Zhang Y, Chua RHB, Pan H-J, Zhao Y (2015) J Am Chem Soc 137:4944–4947
44. Han Z-Y, Xiao H, Chen X-H, Gong L-Z (2009) J Am Chem Soc 131:9182–9183
45. Liu X-Y, Che C-M (2009) Org Lett 11:4204–4207
46. Muratore ME, Holloway CA, Pilling AW, Storer RI, Trevitt G, Dixon DJ (2009) J Am Chem Soc
131:10796–10797
47. Hamilton GL, Kang EJ, Mba M, Toste FD (2007) Science 317:496
48. Zbieg JR, Yamaguchi E, McInturff EL, Krische MJ (2012) Science 336:324–327
49. Cai Q, Zhao Z-A, You S-L (2009) Angew Chem Int Ed 48:7428–7431
50. Sorimachi K, Terada M (2008) J Am Chem Soc 130:14452–14453
51. Komanduri V, Krische MJ (2006) J Am Chem Soc 128:16448–16449
52. Pellissier H (2019) Coord Chem Rev 386:1–31
53. Yu P, Lin J-S, Li L, Zheng S-C, Xiong Y-P, Zhao L-J, Tan B, Liu X-Y (2014) Angew Chem Int Ed
53:11890–11894
54. Rauniyar V, Wang ZJ, Burks HE, Toste FD (2011) J Am Chem Soc 133:8486–8489
55. Ren L, Lei T, Ye J-X, Gong L-Z (2012) Angew Chem Int Ed 51:771–774
56. Chen L, Zhang L, Lv J, Cheng J-P, Luo S (2012) Chem Eur J 18:8891–8895
57. Mori K, Isogai R, Kamei Y, Yamanaka M, Akiyama T (2018) J Am Chem Soc 140:6203–6207
58. Hatano M, Moriyama K, Maki T, Ishihara K (2010) Angew Chem Int Ed 49:3823–3826
59. Alix A, Lalli C, Retailleau P, Masson G (2012) J Am Chem Soc 134:10389–10392
60. Domżalska A, Ulikowski A, Furman B (2017) Alkaline earth metal based chiral lewis acids. In: Mlynarski J (ed) Chiral Lewis acids in organic synthesis. Wiley-VCH, Weinheim, pp 1–23 https ://doi.
org/10.1002/97835 27802 142.ch1
61. Lv J, Zhang L, Luo S, Cheng J-P (2013) Angew Chem Int Ed 52:9786–9790
62. Wang L, Lv J, Zhang L, Luo S (2017) Angew Chem Int Ed 56:10867–10871
63. Chirik P, Morris R (eds) (2015) Special Issue: Earth abundant metals in homogeneous catalysis. Acc
Chem Res 48:(whole issue)
64. Egorova KS, Ananikov VP (2016) Angew Chem Int Ed 55:12150–12162
65. Alig L, Fritz M, Schneider S (2019) Chem Rev 119:2681–2751
66. Crossley SWM, Obradors C, Martinez RM, Shenvi RA (2016) Chem Rev 116:8912–9000
67. Pellissier H, Clavier H (2014) Chem Rev 114:2775–2823
68. Bauer I, Knölker H-J (2015) Chem Rev 115:3170–3387
69. Tzouras NV, Stamatopoulos IK, Papastavrou AT, Liori AA, Vougioukalakis GC (2017) Coord Chem
Rev 343:25–138
70. Chirik P, Morris R (2015) Acc Chem Res 48:2495
71. Choi J, Fu GC (2017) Science 356:7230–7239
72. Wang F, Chen P, Liu G (2018) Acc Chem Res 51:2036–2046
73. Kainz QM, Matier CD, Bartoszewicz A, Zultanski SL, Peters JC, Fu GC (2016) Science 351:681
74. Fischer C, Fu GC (2005) J Am Chem Soc 127:4594–4595
75. Son S, Fu GC (2008) J Am Chem Soc 130:2756–2757
76. Schley ND, Fu GC (2014) J Am Chem Soc 136:16588–16593
77. Tasker SZ, Standley EA, Jamison TF (2014) Nature 509:299
78. Liao S, List B (2010) Angew Chem Int Ed 49:628–631
79. McGarrigle EM, Gilheany DG (2005) Chem Rev 105:1563–1602
80. Merten C, Pollok CH, Liao S, List B (2015) Angew Chem Int Ed 54:8841–8845
81. Gebauer K, Reuß F, Spanka M, Schneider C (2017) Org Lett 19:4588–4591
82. El-Sepelgy O, Haseloff S, Alamsetti SK, Schneider C (2014) Angew Chem Int Ed 53:7923–7927
83. Chen X, Jiang H, Hou B, Gong W, Liu Y, Cui Y (2017) J Am Chem Soc 139:13476–13482
84. Liao S, List B (2012) Adv Synth Catal 354:2363–2367
85. Narute S, Parnes R, Toste FD, Pappo D (2016) J Am Chem Soc 138:16553–16560
86. Narute S, Pappo D (2017) Org Lett 19:2917–2920
87. Morris RH (2016) Chem Rev 116:8588–8654
88. Zhang Z, Butt NA, Zhou M, Liu D, Zhang W (2018) Chin J Chem 36:443–454
89. Quintard A, Rodriguez J (2014) Angew Chem Int Ed 53:4044–4055
90. Zhou S, Fleischer S, Junge K, Beller M (2011) Angew Chem Int Ed 50:5120–5124
91. Zhou S, Fleischer S, Jiao H, Junge K, Beller M (2014) Adv Synth Catal 356:3451–3455
92. Fleischer S, Werkmeister S, Zhou S, Junge K, Beller M (2012) Chem Eur J 18:9005–9010
93. Fleischer S, Zhou S, Werkmeister S, Junge K, Beller M (2013) Chem Eur J 19:4997–5003
94. Hopmann KH (2015) Chem Eur J 21:10020–10030
95. Lu L-Q, Li Y, Junge K, Beller M (2015) J Am Chem Soc 137:2763–2768
Reprinted from the journal
183
