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Synthetic Communications
An International Journal for Rapid Communication of Synthetic Organic Chemistry
Volume 37, 2007 - Issue 14
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Original Articles

Antimony Trichloride–Catalyzed Michael Addition of Indoles to the α,β‐Unsaturated Ketones

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Pages 2309-2316 | Received 30 Nov 2006, Published online: 11 Jul 2007

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Javad Safari, Simin Naseh, Zohre Zarnegar & Zahra Akbari. (2014) Applications of microwave technology to rapid synthesis of substituted imidazoles on silica-supported SbCl3 as an efficient heterogeneous catalyst. Journal of Taibah University for Science 8:4, pages 323-330.
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Articles from other publishers (12)

Cunwei Qian, Rong Han, Zhixing Shen, Qian Li & Xuanrong Chen. (2022) N -Iodosuccinimide (NIS) Promoted Synthesis of 3-Substituted Indole Derivatives . Chinese Journal of Organic Chemistry 42:8, pages 2496.
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Gulzar A. Khan, Javeed A. War, Gowhar A. Naikoo, Umar J. Pandit & Ratnesh Das. (2018) Porous CuO catalysed green synthesis of some novel 3-alkylated indoles as potent antitubercular agents. Journal of Saudi Chemical Society 22:1, pages 6-15.
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Anshu Dandia, Shyam L. Gupta, Vijay Parewa, Amit Sharma, Kuldeep S. Rathore & Amit Sharma. (2013) “On-water” synthesis of 3-substituted indoles via Knoevenagel/Michael addition sequence catalyzed by Cu doped ZnS NPs. Tetrahedron Letters 54:42, pages 5711-5717.
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Yuanyuan Xie, Linfeng Mao & Lehuan Li. (2013) Calix[6]Arene Sulfonic Acids Catalysed Michael Reactions of Indoles with α,β-Unsaturated Ketones in Water Assisted by Microwave Radiation. Journal of Chemical Research 37:8, pages 476-479.
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JAVAD SAFARI, SOHEILA GANDOMI-RAVANDI & SIMIN NASEH. (2013) Efficient, green and solvent-free synthesis of tetrasubstituted imidazoles using SbCl3/SiO2 as heterogeneous catalyst. Journal of Chemical Sciences 125:4, pages 827-833.
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Thirumeni Subramanian, Mayilvasagam Kumarraja & Kasi Pitchumani. (2012) Al-MCM-41 as a mild and ecofriendly catalyst for Michael addition of indole to α,β-unsaturated ketones. Journal of Molecular Catalysis A: Chemical 363-364, pages 115-121.
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Shinsei Sayama. (2011) Regioselective One-Pot Synthesis of 2-Aryl-6-bromobenzothiazole from Arylaldehyde and 2-Aminothiophenol with Phenyltrimethylammonium Tribromide in the Presence of a Catalytic Amount of Antimony(III) Bromide. HETEROCYCLES 83:6, pages 1267.
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R.N. Bhattacharya, Pradip Kundu & Gourhari Maiti. (2011) Antimony trichloride catalyzed three-component reaction of urea, aldehydes and cyclic enol ethers: a novel route to 4-arylhexahydrofuro[2,3-d]pyrimidin-2(3H)-ones. Tetrahedron Letters 52:1, pages 26-28.
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Richard J. Sundberg. 2010. Heterocyclic Scaffolds II:. Heterocyclic Scaffolds II: 47 115 .
Li-Feng Zhang & Shu-Tao Yang. (2009) Silica-supported antimony(III) chloride as an efficient heterogeneous catalyst for the synthesis of aminopropenones and 3-aminopropenoates under solvent-free conditions. Russian Journal of Organic Chemistry 45:1, pages 18-21.
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Jonathon S. Russel & Erin T. Pelkey. 2009. A critical review of the 2007 literature preceded by two chapters on current heterocyclic topics. A critical review of the 2007 literature preceded by two chapters on current heterocyclic topics 122 151 .
Gourhari Maiti & Pradip Kundu. (2007) ChemInform Abstract: Antimony Trichloride Catalyzed Michael Addition of Indoles to the α,β‐Unsaturated Ketones.. ChemInform 39:1.
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