33. Morris RH (2015) Acc Chem Res 48:1494–1502
34. Zuo W, Morris RH (2015) Nat Protoc 10:241–257
35. Demmans KZ, Seo CSG, Lough AJ, Morris RH (2017) Chem Sci 8:6531–6541
36. Morris RH (2018) Dalton Trans 47:10809–10826
37. De Luca L, Passera A, Mezzetti A (2019) J Am Chem Soc 141:2545–2255
38. Farrar-Tobar RA, Wozniak B, Savini A, Hinze S, Tin S, de Vries JG (2019) Angew Chem Int
Ed 58:1129–1133
39. Liang Q, Song D (2020) Chem Soc Rev 49:1209–1232
40. Jiang BL, Ma SS, Wang ML, Liu DS, Xu BH, Zhang SJ (2019) ChemCatChem 11:1701–1706
41. Gao Y, Zhang X, Laishram RD, Chen J, Li K, Zhang K, Zeng G, Fan B (2019) Adv Synth
Catal 361:3991–3997
42. Bruneau-Voisine A, Wang D, Dorcet V, Roisnel T, Darcel C, Sortais J-B (2017) Org Lett
19:3656–3659
43. Demmans KZ, Olson ME, Morris RH (2018) Organometallics 37:4608–4618
44. Zhou Y-P, Mo Z, Luecke M-P, Driess M (2018) Chem Eur J 24:4780–4784
45. Wei D, Bruneau-Voisine A, Dubois M, Bastin S, Sortais JB (2019) ChemCatChem
11:5256–5259
46. Schneekönig J, Junge K, Beller M (2019) Synlett 30:503–507
47. Putten RV, Benschop J, Munck VJ, Weber M, Müller C, Filonenko GA, Pidko EA (2019)
ChemCatChem 11:5232–5235
48. Dubey A, Rahaman SMW, Fayzullin RR, Khusnutdinova JR (2019) ChemCatChem
11:3844–3852
49. Garduño JA, Flores-Alamo M, García JJ (2019) ChemCatChem 11:5330–5338
50. Nikita V, Shvydkiy NV, Vyhivskyi O, Nelyubina YV, Perekalin DS (2019) ChemCatChem
11:1602–1605
51. Ganguli K, Shee S, Panja D, Kundu S (2019) Dalton Trans 48:7358–7366
52. Vigneswaran V, MacMillan SN, Lacy DC (2019) Organometallics 38:4387–4391
53. Zhang C, Hu B, Chen D, Xia H (2019) Organometallics 38:3218–3226
54. Zhou L, Liu D, Lan H, Wang X, Zhao C, Ke Z, Hou C (2020) Cat Sci Technol 10:169–179
55. Passera A, Mezzetti A (2020) Angew Chem Int Ed 59:187–191
56. Uematsu N, Fujii A, Hashiguchi S, Ikariya T, Noyori R (1996) J Am Chem Soc
118:4916–4917
57. Wang C, Pettman A, Bacsa J, Xiao J (2010) Angew Chem Int Ed 49:7548–7552
58. Liu Z, Romero-Canelón I, Qamar B, Hearn JM, Habtemariam A, Barry NPE, Pizarro AM,
Clarkson GJ, Sadler PJ (2014) Angew Chem Int Ed 53:3941–3946
59. Wang C, Li C, Wu X, Pettman A, Xiao J (2009) Angew Chem Int Ed 48:6524–6528
60. Wang D, Astruc D (2015) Chem Rev 115:6621–6686
61. Mashima K, Abe T, Tani K (1998) Chem Lett:1199–1200
62. Bolje A, Hohloch S, van der Meer M, Kosmrlj J, Sarkar B (2015) Chem Eur J 21:6756–6764
63. Bolje A, Hohloch S, Kosmrlj J, Sarkar B (2016) Dalton Trans 45:15983–15993
64. Maity R, Hohloch S, Su C-Y, van der Meer M, Sarkar B (2014) Chem Eur J 20:9952–9961
65. Maity R, van der Meer M, Hohloch S, Sarkar B (2015) Organometallics 34:3090–3096
66. Maity R, Mekic A, van der Meer M, Verma A, Sarkar B (2015) Chem Commun
51:15106–15109
67. Volpe A, Baldino S, Tubaro C, Baratta W, Basato M, Graiff C (2016) Eur J Inorg
Chem:247–251
68. Müller AL, Bleith T, Roth T, Wadepohl H, Gade LH (2015) Organometallics 34:2326–2342
69. Gómez-López JL, Chávez D, Parra-Hake M, Royappa AT, Rheingold AL, Grotjahn DB,
Miranda-Soto V (2016) Organometallics 35:3148–3153
70. Vivancos Á, Albrecht M (2017) Organometallics 36:1580–1590
71. Pretorius R, Mazloomi Z, Albrecht M (2017) J Organomet Chem 845:196–205
72. Navarro M, Smith CA, Albrecht M (2017) Inorg Chem 56:11688–11701
73. Sato Y, Kayaki Y, Ikariya T (2016) Chem Asian J 11:2924–2931
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