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Synthetic Communications
An International Journal for Rapid Communication of Synthetic Organic Chemistry
Volume 34, 2004 - Issue 4
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Original Articles

Mo(CO)6 Mediated Selective Reduction of Azides and Nitro Compounds to Amines Under Neutral Conditions

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Pages 721-725 | Received 21 May 2003, Published online: 16 Aug 2006

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Byung Woo Yoo & Jung Youn Kim. (2020) Selective and efficient desulfurization of thiiranes with Mo(CO)6. Journal of Sulfur Chemistry 41:1, pages 13-18.
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Majid Hashemi, Mohammad Mehdi Khodaei, Mohammad Teymouri, Alimorad Rashidi & Hadi Mohammadi. (2016) Preparation of NiO Nanocatalyst Supported on MWCNTs and Its Application in Reduction of Nitrobenzene to Aniline in Liquid Phase. Synthesis and Reactivity in Inorganic, Metal-Organic, and Nano-Metal Chemistry 46:7, pages 959-967.
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Jian-Shu Wang, Chenyu Li, Jun Ying, Tiefeng Xu, Wangyang Lu, Chuan-Ying Li & Xiao-Feng Wu. (2022) Activated carbon fibers supported palladium as efficient and easy-separable catalyst for carbonylative cyclization of o-alkynylphenols with nitroarenes: Facile construction of benzofuran-3-carboxamides. Journal of Catalysis 413, pages 713-719.
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K. Rajendran, S. Akash, M. Roshni, N. Pandurangan & D. Jagadeesan. (2022) CuO/CaO as a solid reducing reagent for nitroarenes: combined effect of oxygen vacancies and surface basicity. Proceedings of the Indian National Science Academy 88:3, pages 369-378.
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Ravi P. Singh, Manojkumar R. Bhandari, Fatima M. Torres, Thomas Doundoulakis, Delphine Gout & Carl J. Lovely. (2020) Total Synthesis of (±)-2-Debromohymenin via Gold-Catalyzed Intramolecular Alkyne Hydroarylation. Organic Letters 22:9, pages 3412-3417.
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Hideyuki Konishi & Kei Manabe. (2019) Recent progress on catalytic Heck carbonylations using carbon monoxide surrogates. Tetrahedron Letters 60:42, pages 151147.
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Richard C. LarockRichard C. Larock & Alexandre A. Pletnev. 2018. Comprehensive Organic Transformations. Comprehensive Organic Transformations 1 10 .
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Mangarao Nakka, Ramu Tadikonda, Srinivas Nakka & Siddaiah Vidavalur. (2016) Synthesis of 1,2,4-Triazoles, N -Fused 1,2,4-Triazoles and 1,2,4-Oxadiazoles via Molybdenum Hexacarbonyl-Mediated Carbonylation of Aryl Iodides . Advanced Synthesis & Catalysis 358:4, pages 520-525.
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Stacey N. Anderson, Michael T. Larson & Lisa M. Berreau. (2016) Solution or solid – it doesn't matter: visible light-induced CO release reactivity of zinc flavonolato complexes. Dalton Transactions 45:37, pages 14570-14580.
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Anna Karin Belfrage, Prasad Wakchaure, Mats Larhed & Anja Sandström. (2015) Palladium-Catalyzed Carbonylation of Aryl Iodides with Sulfinamides. European Journal of Organic Chemistry 2015:32, pages 7069-7074.
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Lei Yu, Qi Zhang, Shu‐Shuang Li, Jun Huang, Yong‐Mei Liu, He‐Yong He & Yong Cao. (2015) Gold‐Catalyzed Reductive Transformation of Nitro Compounds Using Formic Acid: Mild, Efficient, and Versatile. ChemSusChem 8:18, pages 3029-3035.
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Linda Åkerbladh, Patrik Nordeman, Matyas Wejdemar, Luke R. Odell & Mats Larhed. (2015) Synthesis of 4-Quinolones via a Carbonylative Sonogashira Cross-Coupling Using Molybdenum Hexacarbonyl as a CO Source. The Journal of Organic Chemistry 80:3, pages 1464-1471.
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Praveen Kumar Verma, Manju Bala, Kavita Thakur, Upendra Sharma, Neeraj Kumar & Bikram Singh. (2014) Iron and Palladium(II) Phthalocyanines as Recyclable Catalysts for Reduction of Nitroarenes. Catalysis Letters 144:7, pages 1258-1267.
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Dandu Damodara, Racha Arundhathi, T. Venkata Ramesh Babu, Margaret K. Legan, Hephzibah J. Kumpaty & Pravin R. Likhar. (2014) Polymethylhydrosiloxane derived palladium nanoparticles for chemo- and regioselective hydrogenation of aliphatic and aromatic nitro compounds in water. RSC Adv. 4:43, pages 22567-22574.
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Lin He, Muhammad Sharif, Helfried Neumann, Matthias Beller & Xiao-Feng Wu. (2014) A convenient palladium-catalyzed carbonylative synthesis of 4(3H)-quinazolinones from 2-bromoformanilides and organo nitros with Mo(CO) 6 as a multiple promoter . Green Chem. 16:8, pages 3763-3767.
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Poongavanam Baburajan & Kuppanagounder P. Elango. (2014) Co2(CO)8 as a convenient in situ CO source for the direct synthesis of benzamides from aryl halides (Br/I) via aminocarbonylation. Tetrahedron Letters 55:5, pages 1006-1010.
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Patrik Nordeman, Luke R. Odell & Mats Larhed. (2012) Aminocarbonylations Employing Mo(CO) 6 and a Bridged Two-Vial System: Allowing the Use of Nitro Group Substituted Aryl Iodides and Aryl Bromides . The Journal of Organic Chemistry 77:24, pages 11393-11398.
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S. Farhadi & N. Rashidi. (2012) Perovskite-type ferromagnetic BiFeO3 nanopowder: a new magnetically recoverable heterogeneous nanocatalyst for efficient and selective transfer hydrogenation of aromatic nitro compounds into aromatic amines under microwave heating. Journal of the Iranian Chemical Society 9:6, pages 1021-1031.
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Iván Sorribes, Gerrit Wienhöfer, Cristian Vicent, Kathrin Junge, Rosa Llusar & Matthias Beller. (2012) Chemoselective Transfer Hydrogenation to Nitroarenes Mediated by Cubane-Type Mo 3 S 4 Cluster Catalysts . Angewandte Chemie International Edition 51:31, pages 7794-7798.
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Iván Sorribes, Gerrit Wienhöfer, Cristian Vicent, Kathrin Junge, Rosa Llusar & Matthias Beller. (2012) Chemoselective Transfer Hydrogenation to Nitroarenes Mediated by Cubane‐Type Mo 3 S 4 Cluster Catalysts . Angewandte Chemie 124:31, pages 7914-7918.
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K. Joseph Antony RAJ, M.G. PRAKASH, R. MAHALAKSHMY, T. ELANGOVAN & B. VISWANATHAN. (2012) Liquid Phase Hydrogenation of Nitrobenzene over Nickel Supported on Titania. Chinese Journal of Catalysis 33:7-8, pages 1299-1305.
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Subhrangshu Mukherjee, Sukhendu B. Mandal & Anup Bhattacharjya. (2012) Carbohydrate nitrone and nitrile oxide cycloaddition approach to chiral sulfur heterocycles and nucleosides. RSC Advances 2:24, pages 8969.
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Chun‐Hong Tang, Lin He, Yong‐Mei Liu, Yong Cao, He‐Yong He & Kang‐Nian Fan. (2011) Direct One‐Pot Reductive N‐Alkylation of Nitroarenes by using Alcohols with Supported Gold Catalysts. Chemistry – A European Journal 17:26, pages 7172-7177.
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Saeid Farhadi & Firouzeh Siadatnasab. (2011) Perovskite-type LaFeO3 nanoparticles prepared by thermal decomposition of the La[Fe(CN)6]·5H2O complex: A new reusable catalyst for rapid and efficient reduction of aromatic nitro compounds to arylamines with propan-2-ol under microwave irradiation. Journal of Molecular Catalysis A: Chemical 339:1-2, pages 108-116.
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Leyla Pehlivan, Estelle Métay, Stéphane Laval, Wissam Dayoub, Patrice Demonchaux, Gérard Mignani & Marc Lemaire. (2011) Alternative method for the reduction of aromatic nitro to amine using TMDS-iron catalyst system. Tetrahedron 67:10, pages 1971-1976.
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Saeid Farhadi, Maryam Kazem & Firouzeh Siadatnasab. (2011) NiO nanoparticles prepared via thermal decomposition of the bis(dimethylglyoximato)nickel(II) complex: A novel reusable heterogeneous catalyst for fast and efficient microwave-assisted reduction of nitroarenes with ethanol. Polyhedron 30:4, pages 606-613.
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Anna Wiȩckowska, Rebecca Fransson, Luke R. Odell & Mats Larhed. (2011) Microwave-Assisted Synthesis of Weinreb and MAP Aryl Amides via Pd-Catalyzed Heck Aminocarbonylation Using Mo(CO) 6 or W(CO) 6 . The Journal of Organic Chemistry 76:3, pages 978-981.
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Saeid Farhadi, Firouzeh Siadatnasab & Maryam Kazem. (2011) Microwave-Assisted Rapid and efficient Reduction of Aromatic Nitro Compounds to Amines with Propan-2-ol over Nanosized Perovskite-type SmFeO 3 powder as a New Recyclable Heterogeneous Catalyst . Journal of Chemical Research 35:2, pages 104-108.
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Leyla Pehlivan, Estelle Métay, Stéphane Laval, Wissam Dayoub, Patrice Demonchaux, Gérard Mignani & Marc Lemaire. (2010) Iron-catalyzed selective reduction of nitro compounds to amines. Tetrahedron Letters 51:15, pages 1939-1941.
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John Spencer. (2010) Research Spotlight: Microwave chemistry enabling the synthesis of biologically relevant amines. Future Medicinal Chemistry 2:2, pages 161-168.
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Lin He, Lu‐Cun Wang, Hao Sun, Ji Ni, Yong Cao, He‐Yong He & Kang‐Nian Fan. (2009) Efficient and Selective Room‐Temperature Gold‐Catalyzed Reduction of Nitro Compounds with CO and H 2 O as the Hydrogen Source . Angewandte Chemie International Edition 48:50, pages 9538-9541.
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Lin He, Lu‐Cun Wang, Hao Sun, Ji Ni, Yong Cao, He‐Yong He & Kang‐Nian Fan. (2009) Efficient and Selective Room‐Temperature Gold‐Catalyzed Reduction of Nitro Compounds with CO and H 2 O as the Hydrogen Source . Angewandte Chemie 121:50, pages 9702-9705.
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M. Lakshmi Kantam, Rajashree Chakravarti, Ujjwal Pal, B. Sreedhar & Suresh Bhargava. (2008) Nanocrystalline Magnesium Oxide‐Stabilized Palladium(0): An Efficient and Reusable Catalyst for Selective Reduction of Nitro Compounds. Advanced Synthesis & Catalysis 350:6, pages 822-827.
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Ivan Pogorelić, Mirela Filipan-Litvić, Sonja Merkaš, Goranka Ljubić, Ivica Cepanec & Mladen Litvić. (2007) Rapid, efficient and selective reduction of aromatic nitro compounds with sodium borohydride and Raney nickel. Journal of Molecular Catalysis A: Chemical 274:1-2, pages 202-207.
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. (2007) A Facile and Efficient Deoxygenation of Sulfoxides with Mo(CO) 6 . Bulletin of the Korean Chemical Society 28:2, pages 171-172.
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Nivedita S. Chaubal & Manohar R. Sawant. (2007) Nitro compounds reduction via hydride transfer using mesoporous mixed oxide catalyst. Journal of Molecular Catalysis A: Chemical 261:2, pages 232-241.
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Nivedita S. Chaubal & Manohar R. Sawant. (2006) Synergistic role of aluminium in stabilization of mixed metal oxide catalyst for the nitration of aromatic compounds. Catalysis Communications 7:7, pages 443-449.
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Byung Woo Yoo, Jin Woo Choi & Cheol Min Yoon. (2006) A facile and efficient deoxygenation of amine-N-oxides with Mo(CO)6. Tetrahedron Letters 47:1, pages 125-126.
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Shinya Hanashima, Shino Manabe & Yukishige Ito. (2005) Divergent Synthesis of Sialylated Glycan Chains: Combined Use of Polymer Support, Resin Capture-Release, and Chemoenzymatic Strategies. Angewandte Chemie International Edition 44:27, pages 4218-4224.
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Shinya Hanashima, Shino Manabe & Yukishige Ito. (2005) Divergent Synthesis of Sialylated Glycan Chains: Combined Use of Polymer Support, Resin Capture-Release, and Chemoenzymatic Strategies. Angewandte Chemie 117:27, pages 4290-4296.
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Suresh Iyer & Girish M. Kulkarni. (2004) Mo(CO) 6 Mediated Selective Reduction of Azides and Nitro Compounds to Amines Under Neutral Conditions. . ChemInform 35:30.
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