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Original Articles

Antimony Trichloride Catalyzed Condensation of Indole and Carbonyl Compounds: Synthesis of Bis(indolyl)methanes

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Pages 2243-2249 | Received 25 Feb 2007, Accepted 09 Apr 2007, Published online: 23 Aug 2007

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Read on this site (2)

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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Khodabakhsh Niknam, Dariush Saberi & Mojtaba Baghernejad. (2010) Preparation of Silica-Bonded S-Sulfonic Acid: A Recyclable Catalyst for the Synthesis of Bis-Indolylmethanes. Phosphorus, Sulfur, and Silicon and the Related Elements 185:4, pages 875-882.
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Articles from other publishers (14)

Sandeep Chandrashekharappa, S. O. Sadashiv, Sharangouda J. Patil & B. P. Nandeshwarappa. (2022) Design and Synthesis of New Series of 2-Oxo-2H-Selenopyrano[2,3-b]Quinoline-3-Carboxylates and Evaluation of Their Antibacterial Activity. Pharmaceutical Chemistry Journal 56:5, pages 638-644.
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Saurabh S. Chitnis & Toren Hynes. 2022. Comprehensive Organometallic Chemistry IV. Comprehensive Organometallic Chemistry IV 503 535 .
B.P. Nandeshwarappa, Sandeep Chandrashekharappa & G.K. Prakash. (2020) Nitrogen and selenium containing heterocycles: Part-1: Synthesis of some new substituted 3-(5-(2-oxopropylthio)-1,3,4-oxadiazol-2-yl)-2H-selenopyrano[2,3-b]quinolin-2-ones. Chemical Data Collections 29, pages 100534.
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B.P. Nandeshwarappa, Sandeep Chandrashekharappa & Raghu Ningegowda. (2020) Selenium-containing heterocycles: Synthetic investigation of some new series 3-(5-mercapto-1,3,4-oxadiazol-2-yl)-2H-selenopyrano[2,3-b]quinolin-2-ones. Chemical Data Collections 29, pages 100510.
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B.P. Nandeshwarappa, Sandeep Chandrashekharappa & S.O. Sadashiv. (2020) Synthesis and antibacterial evaluation of 3-acetyl-2H-selenopyrano[2,3-b]quinolin-2-ones. Chemical Data Collections 28, pages 100484.
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Amit Kumar, Chetananda Patel, Pooja Patil, Shivam Vyas & Abha Sharma. (2019) Chemoselective synthesis of bis(indolyl)methanes using sulfonic acid-functionalized chitosan. Chemical Papers 73:12, pages 3095-3104.
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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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Kumar H. C. Kiran, K. M. Mahadevan, Varma P. Prabhakara & A. Srinivasa. (2012) One Pot Synthesis of Medicinally Important cis ‐2‐Methyl‐4‐amino substituted‐1,2,3,4‐tetrahydroquinolines . Chinese Journal of Chemistry 30:3, pages 534-540.
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Ajam C. Shaikh & Chinpiao Chen. (2011) An Easy and Efficient Synthesis of Bisindolylmethanes and Tetraindolylmethane Tröger's Base Catatlyzed by AgBF 4 . Journal of the Chinese Chemical Society 58:7, pages 899-905.
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Hojat Veisi, Alireza Sedrpoushan, Mohammad Ali Zolfigol & Farajollah Mohanazadeh. (2011) Synthesis and application of silica phenyl sulfonic acid as a solid acid heterogeneous catalyst for one-pot synthesis of 2-aryl-1-arylmethyl-1H-1,3-benzimidazoles and bis(indolyl)methanes in water. Journal of Heterocyclic Chemistry 48:6, pages 1448-1454.
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Hojat Veisi, Reza Gholbedaghi, Javad Malakootikhah, Alireza Sedrpoushan, Behrooz Maleki & Davood Kordestani. (2010) Trichloroisocyanuric acid‐catalyzed reaction of indoles: An expeditious synthesis of bis‐indolyl, tris‐indolyl, di(bis‐indolyl), tri(bis‐indolyl), and tetra(bis‐indolyl)methane under solid‐state conditions. Journal of Heterocyclic Chemistry 47:6, pages 1398-1405.
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Morteza Shiri, Mohammad Ali Zolfigol, Hendrik Gerhardus Kruger & Zahra Tanbakouchian. (2009) Bis- and Trisindolylmethanes (BIMs and TIMs). Chemical Reviews 110:4, pages 2250-2293.
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Kazuhiro Kobayashi, Yuu Shirai & Hisatoshi Konishi. (2009) Synthesis of Bis(indolyl)methane Derivatives by Acid-Catalyzed Reactions of Indoles with Vinyl Ethers. HETEROCYCLES 78:8, pages 2033.
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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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