87. Zhang Z, Widenhoefer RA (2007) Angew Chem Int Ed 46:283. doi:10.1002/anie.200603260
88. Ho JHH, Hodgson R, Wagler J, Messerle BA (2010) Dalton Trans 39:4062. doi:10.1039/
B926773E
89. Ho JHH, Choy SWS, Macgregor SA, Messerle BA (2011) Organometallics 30:5978.
doi:10.1021/om2007826
90. Timerbulatova MG, Gatus MRD, Vuong KQ, Bhadbhade M, Algarra AG, Macgregor SA,
Messerle BA (2013) Organometallics 32:5071. doi:10.1021/om4005059
91. Choy SWS, Page MJ, Bhadbhade M, Messerle BA (2013) Organometallics 32:4726.
doi:10.1021/om400613b
92. Messerle BA, Vuong KQ (2007) Organometallics 26:3031. doi:10.1021/om061106r
93. Elgafi S, Field LD, Messerle BA (2000) J Organomet Chem 607:97. doi:10.1016/S0022328X(00)00233-3
94. Chan DMT, Marder TB, Milstein D, Taylor NJ (1987) J Am Chem Soc 109:6385.
doi:10.1021/ja00255a025
95. Chapuis C, Jacoby D (2001) Appl Catal A Gen 221:93. doi:10.1016/S0926-860X(01)00798-0
96. Ho JHH, Black DSC, Messerle BA, Clegg JK, Turner P (2006) Organometallics 25:5800.
doi:10.1021/om060591n
97. Cheung K-C, Wong W-L, So M-H, Zhou Z-Y, Yan S-C, Wong K-Y (2013) Chem Commun
49:710. doi:10.1039/C2CC38454J
98. Li X, Chianese AR, Vogel T, Crabtree RH (2005) Org Lett 7:5437. doi:10.1021/ol052186i
99. Gray K, Page MJ, Wagler J, Messerle BA (2012) Organometallics 31:6270. doi:10.1021/
om300550k
100. Ogata K, Nagaya T, Fukuzawa S (2010) J Organomet Chem 695:1675. doi:10.1016/j.
jorganchem.2010.04.006
101. Klein DP, Ellern A, Angelici RJ (2004) Organometallics 23:5662. doi:10.1021/om049377u
102. Dyke AF, Knox SAR, Morris MJ, Naish PJ (1983) J Chem Soc Dalton Trans 1417. 10.1039/
DT9830001417
103. Yuen HF, Marks TJ (2009) Organometallics 28:2423. doi:10.1021/om9000023
104. Schmidbaur H, Schier A (2008) Chem Soc Rev 37:1931. doi:10.1039/B708845K
105. Sarcher C, Lu ¨hl A, Falk FC, Lebedkin S, Ku ¨hn M, Wang C, Paradies J, Kappes MM,
Klopper W, Roesky PW (2012) Eur J Inorg Chem 2012:5033. doi:10.1002/ejic.201200751
106. LaLonde RL, Sherry BD, Kang EJ, Toste FD (2007) J Am Chem Soc 129:2452. doi:10.1021/
ja068819l
107. Hashmi ASK, Hamzic ´ M, Rominger F, Bats JW (2009) Chem Eur J 15:13318. doi:10.1002/
chem.200901695
108. Aikawa K, Kojima M, Mikami K (2009) Angew Chem Int Ed 48:6073. doi:10.1002/anie.
200902084
109. Kojima M, Mikami K (2012) Synlett 2012:57. doi:10.1055/s-0031-1289875
110. Wang M-Z, Zhou C-Y, Guo Z, Wong EL-M, Wong M-K, Che C-M (2011) Chem Asian J
6:812. doi:10.1002/asia.201000651
111. Bender CF, Widenhoefer RA (2006) Chem Commun 4143. 10.1039/B608638A
112. Meyer N, Roesky PW (2008) Organometallics 28:306. doi:10.1021/om800858t
113. Horrillo-Martı ´nez P, Hultzsch KC (2009) Tetrahedron Lett 50:2054. doi:10.1016/j.tetlet.
2009.02.069
Alkyne Activation Using Bimetallic Catalysts
137
88. Ho JHH, Hodgson R, Wagler J, Messerle BA (2010) Dalton Trans 39:4062. doi:10.1039/
B926773E
89. Ho JHH, Choy SWS, Macgregor SA, Messerle BA (2011) Organometallics 30:5978.
doi:10.1021/om2007826
90. Timerbulatova MG, Gatus MRD, Vuong KQ, Bhadbhade M, Algarra AG, Macgregor SA,
Messerle BA (2013) Organometallics 32:5071. doi:10.1021/om4005059
91. Choy SWS, Page MJ, Bhadbhade M, Messerle BA (2013) Organometallics 32:4726.
doi:10.1021/om400613b
92. Messerle BA, Vuong KQ (2007) Organometallics 26:3031. doi:10.1021/om061106r
93. Elgafi S, Field LD, Messerle BA (2000) J Organomet Chem 607:97. doi:10.1016/S0022328X(00)00233-3
94. Chan DMT, Marder TB, Milstein D, Taylor NJ (1987) J Am Chem Soc 109:6385.
doi:10.1021/ja00255a025
95. Chapuis C, Jacoby D (2001) Appl Catal A Gen 221:93. doi:10.1016/S0926-860X(01)00798-0
96. Ho JHH, Black DSC, Messerle BA, Clegg JK, Turner P (2006) Organometallics 25:5800.
doi:10.1021/om060591n
97. Cheung K-C, Wong W-L, So M-H, Zhou Z-Y, Yan S-C, Wong K-Y (2013) Chem Commun
49:710. doi:10.1039/C2CC38454J
98. Li X, Chianese AR, Vogel T, Crabtree RH (2005) Org Lett 7:5437. doi:10.1021/ol052186i
99. Gray K, Page MJ, Wagler J, Messerle BA (2012) Organometallics 31:6270. doi:10.1021/
om300550k
100. Ogata K, Nagaya T, Fukuzawa S (2010) J Organomet Chem 695:1675. doi:10.1016/j.
jorganchem.2010.04.006
101. Klein DP, Ellern A, Angelici RJ (2004) Organometallics 23:5662. doi:10.1021/om049377u
102. Dyke AF, Knox SAR, Morris MJ, Naish PJ (1983) J Chem Soc Dalton Trans 1417. 10.1039/
DT9830001417
103. Yuen HF, Marks TJ (2009) Organometallics 28:2423. doi:10.1021/om9000023
104. Schmidbaur H, Schier A (2008) Chem Soc Rev 37:1931. doi:10.1039/B708845K
105. Sarcher C, Lu ¨hl A, Falk FC, Lebedkin S, Ku ¨hn M, Wang C, Paradies J, Kappes MM,
Klopper W, Roesky PW (2012) Eur J Inorg Chem 2012:5033. doi:10.1002/ejic.201200751
106. LaLonde RL, Sherry BD, Kang EJ, Toste FD (2007) J Am Chem Soc 129:2452. doi:10.1021/
ja068819l
107. Hashmi ASK, Hamzic ´ M, Rominger F, Bats JW (2009) Chem Eur J 15:13318. doi:10.1002/
chem.200901695
108. Aikawa K, Kojima M, Mikami K (2009) Angew Chem Int Ed 48:6073. doi:10.1002/anie.
200902084
109. Kojima M, Mikami K (2012) Synlett 2012:57. doi:10.1055/s-0031-1289875
110. Wang M-Z, Zhou C-Y, Guo Z, Wong EL-M, Wong M-K, Che C-M (2011) Chem Asian J
6:812. doi:10.1002/asia.201000651
111. Bender CF, Widenhoefer RA (2006) Chem Commun 4143. 10.1039/B608638A
112. Meyer N, Roesky PW (2008) Organometallics 28:306. doi:10.1021/om800858t
113. Horrillo-Martı ´nez P, Hultzsch KC (2009) Tetrahedron Lett 50:2054. doi:10.1016/j.tetlet.
2009.02.069
Alkyne Activation Using Bimetallic Catalysts
137
