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Synthetic Communications
An International Journal for Rapid Communication of Synthetic Organic Chemistry
Volume 32, 2002 - Issue 4
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Original Articles

MILD, EFFICIENT, AND CONVENIENT CONVERSION OF OXIRANES TO THIIRANES WITH AMMONIUM THIOCYANATE AND THIOUREA IN THE PRESENCE OF CERIUM(IV) POLYOXOMETALLATE

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Pages 621-626 | Received 27 Dec 2000, Published online: 16 Aug 2006

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Read on this site (7)

Shadi Hassanzadeh, Ronak Eisavi & Mojtaba Abbasian. (2019) Green synthesis of thiiranes from epoxides catalyzed by magnetically separable CuFe2O4/Mg(OH)2 nanocomposite in water under benign conditions. Journal of Sulfur Chemistry 40:3, pages 240-255.
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Ronak Eisavi, Fatemeh Ahmadi, Behrooz Ebadzade & Seiran Ghadernejad. (2017) A green method for solvent-free conversion of epoxides to thiiranes using NH4SCN in the presence of NiFe2O4 and MgFe2O4 magnetic nanocatalysts. Journal of Sulfur Chemistry 38:6, pages 614-624.
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Ronak Eisavi & Behzad Zeynizadeh. (2016) A green protocol for rapid and efficient conversion of epoxides to thiiranes using alumina immobilized thiourea at solvent-free conditions. Phosphorus, Sulfur, and Silicon and the Related Elements 191:1, pages 65-69.
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Behzad Zeynizadeh, Mohammad Mehdi Baradarani & Ronak Eisavi. (2011) A Practical and Eco-Friendly Method for Conversion of Epoxides to Thiiranes with Immobilized Thiourea on CaCO3 . Phosphorus, Sulfur, and Silicon and the Related Elements 186:11, pages 2208-2215.
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Ronak Eisavi, Behzad Zeynizadeh & Mohammad Mehdi Baradarani. (2011) Zeolite Molecular Sieve 4Å: A Reusable Catalyst for Fast and Efficient Conversion of Epoxides to Thiiranes with Thiourea. Phosphorus, Sulfur, and Silicon and the Related Elements 186:9, pages 1902-1909.
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Behzad Zeynizadeh & Samal Yeghaneh. (2009) A Green Protocol for Solvent-Free Conversion of Epoxides to Thiiranes with Dowex-50WX8–Supported Thiourea. Phosphorus, Sulfur, and Silicon and the Related Elements 184:2, pages 362-368.
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Peyman Salehi, Mohammad Mahdi Khodaei, Mohammad Ali Zolfigol & Afsaneh Keyvan. (2003) Magnesium Hydrogensulfate: A Cheap and Efficient Catalyst for the Conversion of Epoxides into β-Alkoxy Alcohols, Vicinal-Diols, and Thiiranes. Synthetic Communications 33:17, pages 3041-3048.
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Articles from other publishers (14)

Anna Tsoukaki, Elpida Skolia, Ierasia Triandafillidi & Christoforos G. Kokotos. (2022) Organocatalytic Synthesis of Thiiranes from Alkenes. European Journal of Organic Chemistry 2022:34.
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Rezvan Kardooni & Ali Reza Kiasat. (2020) Polyethylene Glycol as a Green and Biocompatible Reaction Media for the Catalyst Free Synthesis of Organic Compounds. Current Organic Chemistry 24:12, pages 1275-1314.
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Javad Afsar, Mohammad Ali Zolfigol & Ardeshir Khazaei. (2018) [Fe 3 O 4 @SiO 2 @(CH 2 ) 3 im]C 6 F 5 O as a New Hydrophilic and Task-Specific Nanomagnetic Catalyst: Application for Synthesis of β -Azido Alcohols and Thiiranes under Mild and Green Conditions . ChemistrySelect 3:39, pages 11134-11140.
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Ronak Eisavi, Behzad Zeynizadeh & Mohammad Mehdi Baradarani. (2011) Fast, Efficient and Regioselective Conversion of Epoxides to β-Hydroxy Thiocyanates with NH 4 SCN/Zeolite Molecular Sieve 4 Å under Solvent-Free Conditions . Bulletin of the Korean Chemical Society 32:2, pages 630-634.
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Bahram Yadollahi, Valiollah Mirkhani, Shahram Tangestaninejad & Davud Karimian. (2011) Rapid and efficient protection of alcohols and phenols, and deprotection of trimethylsilyl ethers catalyzed by a cerium-containing polyoxometalate. Applied Organometallic Chemistry 25:2, pages 83-86.
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Christian M. Kleiner, Luise Horst, Christian Würtele, Raffael Wende & Peter R. Schreiner. (2009) Isolation of the key intermediates in the catalyst-free conversion of oxiranes to thiiranes in water at ambient temperature. Organic & Biomolecular Chemistry 7:7, pages 1397.
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T. Vilaivan, W. Chavasiri & P. Rashatasakhon. 2008. Comprehensive Heterocyclic Chemistry III. Comprehensive Heterocyclic Chemistry III 391 431 .
J. Warkentin & D. Plażuk. 2008. Comprehensive Heterocyclic Chemistry III. Comprehensive Heterocyclic Chemistry III 299 390 .
Habib Firouzabadi, Nasser Iranpoor & Abbas Khoshnood. (2007) Aluminum tris (dodecyl sulfate) trihydrate Al(DS)3·3H2O as an efficient Lewis acid–surfactant-combined catalyst for organic reactions in water. Journal of Molecular Catalysis A: Chemical 274:1-2, pages 109-115.
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Shahram Tangestaninejad, Majid Moghadam, Valiollah Mirkhani, Bahram Yadollahi & S. Mohammad R. Mirmohammadi. (2005) Mild and Efficient Ring Opening of Epoxides Catalyzed by Potassium Dodecatungstocobaltate(III). Monatshefte für Chemie - Chemical Monthly 137:2, pages 235-242.
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Koen Binnemans. 2006. Handbook on the Physics and Chemistry of Rare Earths Volume 36. Handbook on the Physics and Chemistry of Rare Earths Volume 36 281 392 .
I. Shcherbakova & A.F. Pozharskii. 2005. Comprehensive Organic Functional Group Transformations II. Comprehensive Organic Functional Group Transformations II 89 235 .
Hashem Sharghi, Alireza Hassani Nejad & Mohammad Ali Nasseri. (2004) Metalloporphyrins as new catalysts in the mild, efficient and regioselective conversion of epoxides to β-hydroxy thiocyanates with NH 4 SCN . New J. Chem. 28:8, pages 946-951.
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V. Mirkhani, S. Tangestaninejad & L. Alipanah. (2010) ChemInform Abstract: Mild, Efficient, and Convenient Conversion of Oxiranes to Thiiranes with Ammonium Thiocyanate and Thiourea in the Presence of Cerium(IV) Polyoxometallate.. ChemInform 33:27.
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