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Synthetic Communications
An International Journal for Rapid Communication of Synthetic Organic Chemistry
Volume 28, 1998 - Issue 17
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Original Articles

Poly(4-Vinylpyridinium P-Toluenesulfonate) as a Polymer-Supported Catalyst for Hydrolysis of Tetrahydropyranyl Ethers

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Pages 3209-3212 | Accepted 17 Feb 1998, Published online: 23 Aug 2006

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (4)

Iraj Mohammadpoor-Baltork, Bahram Kharamesh & Sadegh Kolagar. (2002) EFFICIENT DEPROTECTION OF TETRAHYDROPYRANYL ETHERS BY BISMUTH(III) SALTS. Synthetic Communications 32:11, pages 1633-1637.
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G. Sudhakar Reddy, Paravathi Neelakantan & D.S. Iyengar. (2000) An Efficient and Selective Deprotection of Tetrahydropyranyl Ethers by CeCl3.7H2O. Synthetic Communications 30:22, pages 4107-4111.
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K. Joju Davis, U.T. Bhalerao & B. Vittal Rao. (2000) CuCl2.2H2O — MeOH. a New Reagent System for the Deprotection of Tetrahydropyranyl Ethers. Synthetic Communications 30:13, pages 2301-2308.
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Articles from other publishers (14)

Kiyoshi Tanemura & Tsuneo Suzuki. (2015) Highly Efficient Acetalization of Carbonyl Compounds Catalyzed by Aniline–Aldehyde Resin Salts. Chemistry Letters 44:6, pages 797-799.
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G. K. Surya Prakash, Laxman Gurung, Kevin E. Glinton, Kavita Belligund, Thomas Mathew & George A. Olah. (2015) Poly(4-vinylpyridine)-nitrating mixture complex (PVP-NM): solid nitrating mixture equivalent for safe and efficient aromatic nitration. Green Chemistry 17:6, pages 3446-3451.
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R. Srinivasulu, P. V. V. Satyanarayana & K. Ravi Kumar. (2014) Zinc triflate: A mild and efficient catalyst for deprotection of tetrahydropyranyl ethers. Russian Journal of General Chemistry 83:12, pages 2419-2422.
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Kiyoshi Tanemura & Tsuneo Suzuki. (2013) Aniline–terephthalaldehyde resin p-toluenesulfonic acid (ATRT) salt as efficient mild polymeric solid acid catalyst. Tetrahedron Letters 54:49, pages 6740-6743.
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Yanzhen Yin, Zeyuan Dong, Quan Luo & Junqiu Liu. (2012) Biomimetic catalysts designed on macromolecular scaffolds. Progress in Polymer Science 37:11, pages 1476-1509.
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K. Ravi Kumar, P. V. V. Satyanarayana & B. Srinivasa Reddy. (2012) Simple and Efficient Method for Deprotection of Tetrahydropyranyl Ethers by Using Silica Supported Sodium Hydrogen Sulphate. Chinese Journal of Chemistry 30:5, pages 1189-1191.
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Roderick W. Bates & Yongna Lu. (2010) Synthesis of (−)-Sedinine by Allene Cyclization and Iminium Ion Chemistry. Organic Letters 12:17, pages 3938-3941.
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Belén Altava, M. Isabel Burguete & Santiago V. Luis. 2008. The Power of Functional Resins in Organic Synthesis. The Power of Functional Resins in Organic Synthesis 245 308 .
Maurizio Benaglia, Alessandra Puglisi & Franco Cozzi. (2003) Polymer-Supported Organic Catalysts. Chemical Reviews 103:9, pages 3401-3430.
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Mahmood Tajbakhsh, Rahman Hosseinzadeh & Mohammad Yazdani Niaki. (2019) Synthesis and Application of 2,6-Dicarboxypyridinium Chlorochromate as a new Oxidising Reagent for Alcohols, Silyl Ethers, and THP ethers under Mild and Non-Aqueous Conditions. Journal of Chemical Research 2002:10, pages 508-510.
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Bruce Clapham, Thomas S. Reger & Kim D. Janda. (2001) Polymer-supported catalysis in synthetic organic chemistry. Tetrahedron 57:22, pages 4637-4662.
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Iraj Mohammadpoor-Baltork, Mohammad Kazem Amini & Siyamak Farshidipoor. (2000) Selective, Convenient and Efficient Deprotection of Trimethylsilyl and Tetrahydropyranyl Ethers, Ethylene Acetals and Ketals with Oxone under Non-aqueous Conditions. Bulletin of the Chemical Society of Japan 73:12, pages 2775-2778.
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Zhengong Li, Bheemashankar A. Kulkarni & A. Ganesan. (2000) A selenide linker for “traceless” solid-phase organic synthesis. Biotechnology and Bioengineering 71:2, pages 104-106.
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Z. LI & A. GANESAN. (2010) ChemInform Abstract: Poly(4‐vinylpyridinium p‐toluenesulfonate) as a Polymer‐Supported Catalyst for Hydrolysis of Tetrahydropyranyl Ethers.. ChemInform 29:48.
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