40
84. Wang L, Wang H, Zhang W, Zhang J, Lewis JP, Meng X, Xiao F-S (2013) Aerobic homocoupling of phenylboronic acid on mg-Al mixed-oxides-supported au nanoparticles. J Catal
298:186–197
85. Kirai N, Yamamoto Y (2009) Homocoupling of Arylboronic acids catalyzed by
1,10-Phenanthroline-ligated copper complexes in air. Eur J Org Chem 2009:1864–1867
86. Cheng G, Luo M (2011) Homocoupling of Arylboronic acids catalyzed by CuCl in air at
room temperature. Eur J Org Chem 2011:2519–2523
87. Kaboudin B, Mostafalu R, Yokomatsu T (2013) Fe3O4 nanoparticle-supported cu(II)-Î
2
-
cyclodextrin complex as a magnetically recoverable and reusable catalyst for the synthesis of
symmetrical biaryls and 1,2,3-triazoles from aryl boronic acids. Green Chem 15:2266–2274
88. Hua S-K, Hu Q-P, Ren J, Zeng B-B (2013) Dilithium tetrachlorocuprate(II) catalyzed oxidative homocoupling of functionalized Grignard reagents. Synthesis 45:518–526
89. Cahiez G, Moyeux A, Buendia J, Duplais C (2007) Manganese- or Iron-catalyzed homocoupling of Grignard reagents using atmospheric oxygen as an oxidant. J Am Chem Soc
129:13788–13789
90. Liu W, Lei A (2008) Efficient Fe-catalyzed homo-coupling of aryl Grignard reagents using
O2 as the oxidant. Tetrahedron Lett 49:610–613
91. Mayer M, Czaplik WM, von Wangelin AJ (2009) On cobalt-catalyzed biaryl coupling reactions. Synlett:2919–2923
92. Aparna PI, Bhat BR (2012) Homocoupling of aryl Grignard reagents to form biaryls using
ruthenium(III) complex, [RuCl(C3S5)(H2O)(PPh3)2]. J Mol Catal A Chem 358:73–78
93. Sophiphun O, Wittayakun J, Dhital RN, Haesuwannakij S, Murugadoss A, Sakurai H (2012)
Gold/palladium bimetallic alloy nanoclusters stabilized by chitosan as highly efficient and
selective catalysts for Homocoupling of Arylboronic acid. Aust J Chem 65:1238–1243
94. Bhat API, Inam F, Bhat BR (2013) One-step synthesis of Biaryls under mild conditions. Eur
J Org Chem 2013:7139–7144
95. Cahiez G, Duplais C, Buendia J (2009) Manganese-catalyzed oxidative cross-coupling of
Grignard reagents with oxygen as an oxidant. Angew Chem Int Ed 48:6731–6734
96. Chen M, Zheng X, Li W, He J, Lei A (2010) Palladium-catalyzed aerobic oxidative
cross- coupling reactions of terminal alkynes with Alkylzinc reagents. J Am Chem Soc
132:4101–4103
97. Kiefer G, Jeanbourquin L, Severin K (2013) Oxidative coupling reactions of Grignard
reagents with nitrous oxide. Angew Chem Int Ed 52:6302–6305
98. Mizuno H, Sakurai H, Amaya T, Hirao T (2006) Oxovanadium(v)-catalyzed oxidative biaryl
synthesis from organoborate under O2. Chem Commun:5042–5044
99. Liu KM, Liao LY, Duan XF (2015) Iron catalyzed oxidative assembly of N-heteroaryl and
aryl metal reagents using oxygen as an oxidant. Chem Commun 51:1124–1127
100. Liu KM, Wei J, Duan XF (2015) Iron-catalyzed oxidative biaryl cross-couplings via mixed
diaryl titanates: significant influence of the order of combining aryl Grignard reagents with
titanate. Chem Commun 51:4655–4658
H. Zhang
84. Wang L, Wang H, Zhang W, Zhang J, Lewis JP, Meng X, Xiao F-S (2013) Aerobic homocoupling of phenylboronic acid on mg-Al mixed-oxides-supported au nanoparticles. J Catal
298:186–197
85. Kirai N, Yamamoto Y (2009) Homocoupling of Arylboronic acids catalyzed by
1,10-Phenanthroline-ligated copper complexes in air. Eur J Org Chem 2009:1864–1867
86. Cheng G, Luo M (2011) Homocoupling of Arylboronic acids catalyzed by CuCl in air at
room temperature. Eur J Org Chem 2011:2519–2523
87. Kaboudin B, Mostafalu R, Yokomatsu T (2013) Fe3O4 nanoparticle-supported cu(II)-Î
2
-
cyclodextrin complex as a magnetically recoverable and reusable catalyst for the synthesis of
symmetrical biaryls and 1,2,3-triazoles from aryl boronic acids. Green Chem 15:2266–2274
88. Hua S-K, Hu Q-P, Ren J, Zeng B-B (2013) Dilithium tetrachlorocuprate(II) catalyzed oxidative homocoupling of functionalized Grignard reagents. Synthesis 45:518–526
89. Cahiez G, Moyeux A, Buendia J, Duplais C (2007) Manganese- or Iron-catalyzed homocoupling of Grignard reagents using atmospheric oxygen as an oxidant. J Am Chem Soc
129:13788–13789
90. Liu W, Lei A (2008) Efficient Fe-catalyzed homo-coupling of aryl Grignard reagents using
O2 as the oxidant. Tetrahedron Lett 49:610–613
91. Mayer M, Czaplik WM, von Wangelin AJ (2009) On cobalt-catalyzed biaryl coupling reactions. Synlett:2919–2923
92. Aparna PI, Bhat BR (2012) Homocoupling of aryl Grignard reagents to form biaryls using
ruthenium(III) complex, [RuCl(C3S5)(H2O)(PPh3)2]. J Mol Catal A Chem 358:73–78
93. Sophiphun O, Wittayakun J, Dhital RN, Haesuwannakij S, Murugadoss A, Sakurai H (2012)
Gold/palladium bimetallic alloy nanoclusters stabilized by chitosan as highly efficient and
selective catalysts for Homocoupling of Arylboronic acid. Aust J Chem 65:1238–1243
94. Bhat API, Inam F, Bhat BR (2013) One-step synthesis of Biaryls under mild conditions. Eur
J Org Chem 2013:7139–7144
95. Cahiez G, Duplais C, Buendia J (2009) Manganese-catalyzed oxidative cross-coupling of
Grignard reagents with oxygen as an oxidant. Angew Chem Int Ed 48:6731–6734
96. Chen M, Zheng X, Li W, He J, Lei A (2010) Palladium-catalyzed aerobic oxidative
cross- coupling reactions of terminal alkynes with Alkylzinc reagents. J Am Chem Soc
132:4101–4103
97. Kiefer G, Jeanbourquin L, Severin K (2013) Oxidative coupling reactions of Grignard
reagents with nitrous oxide. Angew Chem Int Ed 52:6302–6305
98. Mizuno H, Sakurai H, Amaya T, Hirao T (2006) Oxovanadium(v)-catalyzed oxidative biaryl
synthesis from organoborate under O2. Chem Commun:5042–5044
99. Liu KM, Liao LY, Duan XF (2015) Iron catalyzed oxidative assembly of N-heteroaryl and
aryl metal reagents using oxygen as an oxidant. Chem Commun 51:1124–1127
100. Liu KM, Wei J, Duan XF (2015) Iron-catalyzed oxidative biaryl cross-couplings via mixed
diaryl titanates: significant influence of the order of combining aryl Grignard reagents with
titanate. Chem Commun 51:4655–4658
H. Zhang
