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84. Matsuo G, Hori N, Nakata T (1999) Tetrahedron Lett 40(50):8859–8862
85. Nakata T (2010) Chem Rec 10(3):159–172
86. Bamoharram FF, Heravi MM, Roshani M, Gharib A, Jahangir M (2006) J Mol Catal A Chem
252(1–2):90–95
87. Endo Y, Ba ¨ckvall J-E (2011) Chem Eur J 17(45):12596–12601
88. Ito M, Osaku A, Shiibashi A, Ikariya T (2007) Org Lett 9(9):1821–1824
89. Ebine M, Suga Y, Fuwa H, Sasaki M (2010) Org Biomol Chem 8(1):39–42
90. Nicolaou KC, Aversa RJ, Jin J, Rivas F (2010) J Am Chem Soc 132(19):6855–6861
91. Marek A, Patil MR, Klepetarova B, Kohout L, Elbert T (2012) Tetrahedron Lett 53
(16):2048–2050
92. Ghosh AK, Xi K (2009) J Org Chem 74(3):1163–1170
93. Snyder SA, Treitler DS, Brucks AP (2011) Aldrichimica Acta 44(2):27–40
94. Snyder SA, Wright NE, Pflueger JJ, Breazzano SP (2011) Angew Chem Int Ed 50
(37):8629–8633
95. Parenty A, Moreau X, Campagne J-M (2006) Chem Rev 106(3):911–939
96. Basabe P, Bodero O, Marcos IS, Diez D, Blanco A, de Roman M, Urones JG (2009) J Org
Chem 74(20):7750–7754
97. Fuwa H, Noji S, Sasaki M (2010) J Org Chem 75(15):5072–5082
98. Altemo ¨ller M, Gehring T, Cudaj J, Podlech J, Goesmann H, Feldmann C, Rothenberger A
(2009) Eur J Org Chem (11): 2130–2140
99. Cudaj J, Podlech J (2012) Synlett 23(3):371–374
100. Zhao W, Li Z, Sun J (2013) J Am Chem Soc 135(12):4680–4683
101. Wang L, Thai K, Gravel M (2009) Org Lett 11(4):891–893
102. Fujiwara H, Kurogi T, Okaya S, Okano K, Tokuyama H (2012) Angew Chem Int Ed 51
(52):13062–13065
103. Ebine M, Fuwa H, Sasaki M (2011) Chem Eur J 17(49):13754–13761
320
O. Piva
