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Synthetic Communications
An International Journal for Rapid Communication of Synthetic Organic Chemistry
Volume 30, 2000 - Issue 12
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Original Articles

Microwave Induced Bismuth Trichloride Catalysed Beckmann Rearrangement of Oximes

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Pages 2105-2111 | Received 10 Jun 1999, Published online: 04 Dec 2007

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Rawesh Kumar, Sneha Shah, Prangya Paramita Das, Gami Girish Kumar Bhagavanbhai, Ahmed Al Fatesh & Biswajit Chowdhury. (2019) An overview of caprolactam synthesis. Catalysis Reviews 61:4, pages 516-594.
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Navjeet Kaur. (2019) Seven-membered N-heterocycles: metal and nonmetal assisted synthesis. Synthetic Communications 49:8, pages 987-1030.
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Ji-Tai Li, Xian-Tao Meng & Ying Yin. (2010) Efficient Procedure for Beckmann Rearrangement of Ketoximes Catalyzed by Sulfamic Acid/Zinc Chloride. Synthetic Communications 40:10, pages 1445-1452.
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Hossein Eshghi & Zinat Gordi. (2003) An Easy Method for the Generation of Amides from Ketones by a Beckmann Type Rearrangement Mediated by Microwave. Synthetic Communications 33:17, pages 2971-2978.
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Adyl Oussaid, Fatima Benyaqad, Boualem Oussaid & Bernard Garrigues. (2003) Ene Réaction et Réaction de Substitution sur Des Hétérocycles Catalysées par les Sels de Bi(III). Phosphorus, Sulfur, and Silicon and the Related Elements 178:7, pages 1605-1616.
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Articles from other publishers (28)

Daniel M. Baier, Tilo Rensch, Desislava Dobreva, Carolina Spula, Stephen Fanenstich, Marisol Rappen, Konrad Bergheim, Sven Grätz & Lars Borchardt. (2022) The Mechanochemical Beckmann Rearrangement over Solid Acids: From the Ball Mill to the Extruder. Chemistry–Methods 3:4.
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Debashish Mishra, Dineshwori Chanu Loukrakpam, Smriti Rekha Neog, Debojit Hazarika & Prodeep Phukan. (2022) A Switchable Protocol for Selective Synthesis of gem ‐Dibromo Compounds and Amides from Ketoximes using TsNBr 2 . ChemistrySelect 7:44.
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H. Keith Chenault. 2021. Handbook of Pyrrolidone and Caprolactam Based Materials. Handbook of Pyrrolidone and Caprolactam Based Materials 191 238 .
Dharm Dev, Tapasi Kalita, Tanmay Mondal & Bhubaneswar Mandal. (2020) Ethyl 2‐Cyano‐2‐(2‐nitrobenzenesulfonyloxyimino) Acetate ( ortho ‐NosylOXY)‐Mediated Double Beckmann Rearrangement of Ketoximes under Microwave Irradiation: A Mechanistic Perception . Advanced Synthesis & Catalysis 363:5, pages 1427-1435.
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Jie Jack LiJie Jack Li. 2021. Name Reactions. Name Reactions 25 28 .
Kamalpreet Kaur & Suman Srivastava. (2020) Beckmann rearrangement catalysis: a review of recent advances. New Journal of Chemistry 44:43, pages 18530-18572.
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Amrita Ghosh & Shital K. Chattopadhyay. (2020) Microwave-mediated Synthesis of Medium Ring-sized Heterocyclic Compounds. Current Microwave Chemistry 7:2, pages 123-144.
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Richard C. LarockRichard C. Larock & Roman Rozhkov. 2018. Comprehensive Organic Transformations. Comprehensive Organic Transformations 1 28 .
Siyuan Liu, Jingping Qu & Baomin Wang. (2018) Substrate-controlled divergent synthesis of polycyclic indoloazepines and indolodiazepines via 1,5-hydride shift/7-cyclization cascades . Chemical Communications 54:57, pages 7928-7931.
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Sheena Mahajan, Bhavana Sharma & Kamal K. Kapoor. (2015) A solvent-free one step conversion of ketones to amides via Beckmann rearrangement catalysed by FeCl3·6H2O in presence of hydroxylamine hydrochloride. Tetrahedron Letters 56:14, pages 1915-1918.
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Jie Jack LiJie Jack Li. 2014. Name Reactions. Name Reactions 39 41 .
Na An, Hongjun Pi, Lifeng Liu, Wenting Du & Weiping Deng. (2011) A Mild and Highly Efficient Catalyst for Beckmann Rearrangement, BF 3 ·OEt 2 . Chinese Journal of Chemistry 29:5, pages 947-950.
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Ian T. Crosby, James K. Shin & Ben Capuano. (2010) The Application of the Schmidt Reaction and Beckmann Rearrangement to the Synthesis of Bicyclic Lactams: Some Mechanistic Considerations. Australian Journal of Chemistry 63:2, pages 211.
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Jie Jack LiJie Jack Li. 2009. Name Reactions. Name Reactions 33 35 .
. (2008) Silica Supported Sulphamic Acid as Mild Catalyst for Synthesis of Anilides (Beckmann Rearrangement), Using Microwave Irradiation. Journal of the Korean Chemical Society 52:4, pages 454-456.
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Matthew D. BowmanJennifer L. HolcombChad M. KormosNicholas E. LeadbeaterVictoria A. Williams. (2007) Approaches for Scale-Up of Microwave-Promoted Reactions. Organic Process Research & Development 12:1, pages 41-57.
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Zheng Li, Zhong Lu, Anguo Zhu, Xu Feng, Jing Liu & Guoqiang Tian. (2007) Silica-supported Phosphorus Chloride: An Efficient and Recyclable Catalyst for Beckmann Rearrangement of Ketoximes and Dehydration of Aldoximes Under Microwave Irradiation. Catalysis Letters 120:1-2, pages 100-105.
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. (2007) One-Pot Efficient Beckmann Rearrangement of Ketones Catalyzed by Silica Sulfuric Acid. Journal of the Korean Chemical Society 51:4, pages 361-364.
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Yasuhiro Torisawa, Takao Nishi & Jun-ichi Minamikawa. (2007) Continuing efforts on the improvement of Beckmann rearrangement of indanone oxime. Bioorganic & Medicinal Chemistry Letters 17:2, pages 448-452.
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Nicholas E. Leadbeater & Hanna M. Torenius. 2006. Microwaves in Organic Synthesis. Microwaves in Organic Synthesis 327 361 .
Raymond J. Cvetovich, John Y. L. Chung, Michael H. Kress, Joseph S. Amato, Louis Matty, M. David Weingarten, Fuh-Rong Tsay, Zhen Li & George Zhou. (2005) An Efficient Synthesis of a Dual PPAR α/γ Agonist and the Formation of a Sterically Congested α-Aryloxyisobutyric Acid via a Bargellini Reaction. The Journal of Organic Chemistry 70:21, pages 8560-8563.
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Bo Wang, Yanlong Gu, Cheng Luo, Tao Yang, Liming Yang & Jishuan Suo. (2004) Sulfamic acid as a cost-effective and recyclable catalyst for liquid Beckmann rearrangement, a green process to produce amides from ketoximes without waste. Tetrahedron Letters 45:17, pages 3369-3372.
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Michael B. Smith. 2003. Compendium of Organic Synthetic Methods. Compendium of Organic Synthetic Methods 226 263 .
Yasuhiro Torisawa, Takao Nishi & Jun-ichi Minamikawa. (2003) A study on the conversion of indanones into carbostyrils. Bioorganic & Medicinal Chemistry 11:10, pages 2205-2209.
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Gwang-il An, Misoo Kim, Jin Yeon Kim & Hakjune Rhee. (2003) Oxidation of aldimines to amides by m-CPBA and BF3·OEt2. Tetrahedron Letters 44:10, pages 2183-2186.
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Lidia De Luca, Giampaolo Giacomelli & Andrea Porcheddu. (2002) Beckmann Rearrangement of Oximes under Very Mild Conditions. The Journal of Organic Chemistry 67:17, pages 6272-6274.
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Yasuhiro Torisawa, Takao Nishi & Jun-ichi Minamikawa. (2002) Interesting reaction of the indanone oximes under Beckmann rearrangement conditions. Bioorganic & Medicinal Chemistry Letters 12:3, pages 387-390.
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Ashim J. Thakur, Anima Boruah, Dipak Prajapati & Jagir S. Sandhu. (2010) ChemInform Abstract: Microwave Induced Bismuth Trichloride Catalyzed Beckmann Rearrangement of Oximes.. ChemInform 31:40.
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