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Synthetic Communications
An International Journal for Rapid Communication of Synthetic Organic Chemistry
Volume 23, 1993 - Issue 4
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Original Articles

Clay Catalysis: A Convenient and Rapid Formation of Anhydride from Carboxylic Acid and Isopropenyl Acetate Under Microwave Irradiation

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Pages 419-424 | Received 10 Jul 1992, Published online: 23 Sep 2006

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Read on this site (3)

Xiao-Ai Wu, Ping Ying, Jun-Yang Liu, Heng-Shui Shen, Yue Chen & Ling He. (2009) Lithium Chloride–Assisted Selective Hydrolysis of Methyl Esters Under Microwave Irradiation. Synthetic Communications 39:19, pages 3459-3470.
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P. Sunitha, K. Shiva Kumar, B. Rama Rao & G. Venkateshwarlu. (2008) Microwave assisted efficient synthesis of β-keto-sulfones in aqueous medium. Green Chemistry Letters and Reviews 1:3, pages 179-183.
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F. Matloubl Moghaddam & A. Sharifi. (1995) Microwave Promoted Acetalization of Aldehydes and Ketones. Synthetic Communications 25:16, pages 2457-2461.
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Articles from other publishers (25)

Vinod K. Tiwari, Abhijeet Kumar, Sanchayita Rajkhowa, Garima Tripathi & Anil Kumar SinghVinod K. Tiwari, Abhijeet Kumar, Sanchayita Rajkhowa, Garima Tripathi & Anil Kumar Singh. 2022. Green Chemistry. Green Chemistry 207 260 .
Nicolai Kallscheuer, Jochem Gätgens, Marvin Lübcke, Jörg Pietruszka, Michael Bott & Tino Polen. (2016) Improved production of adipate with Escherichia coli by reversal of β-oxidation. Applied Microbiology and Biotechnology 101:6, pages 2371-2382.
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R.W. Mccabe & J.M. Adams. 2013. Handbook of Clay Science. Handbook of Clay Science 491 538 .
Byong-Wook Lee, Hwang-Min Kim, Young-Wun Kim & Yeong-Joon Kim. (2011) Chemical Transformation of Succinic Acid by Using Amberlite IR-120 and the Reusability of Catalyst. Journal of the Korean Chemical Society 55:6, pages 1007-1011.
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Kumar V. Srinivasan, Pratip K. Chaskar, Satish N. Dighe, Dhanashri S. Rane, Pranav V. Khade & Kishor S. Jain. (2011) Microwave Assisted Synthesis of Fused Heterocyclic Compounds. HETEROCYCLES 83:11, pages 2451.
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Sivasankaran Nithyanandan, Chinnusamy Saravanan, Sengodan Senthil & Palaninathan Kannan. (2010) Microwave-assisted synthesis of photochromic fulgides. Journal of Chemical Sciences 122:2, pages 183-188.
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Christopher R. Strauss. (2009) A Strategic, 'Green' Approach to Organic Chemistry with Microwave Assistance and Predictive Yield Optimization as Core, Enabling Technologies. Australian Journal of Chemistry 62:1, pages 3.
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Zhuan Fang, Guo-Chuan Zhou, Shi-Long Zheng, Guang-Li He, Ju-Lian Li, Ling He & Di Bei. (2007) Lithium chloride-catalyzed selective demethylation of aryl methyl ethers under microwave irradiation. Journal of Molecular Catalysis A: Chemical 274:1-2, pages 16-23.
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Carlo Fumagalli. 2001. Kirk-Othmer Encyclopedia of Chemical Technology. Kirk-Othmer Encyclopedia of Chemical Technology.
J.M. Adams & R.W. McCabe. 2006. Handbook of Clay Science. Handbook of Clay Science 541 581 .
E.S.H. El Ashry, A.A. Kassem & E. Ramadan. 2006. Advances in Heterocyclic Chemistry Volume 90. Advances in Heterocyclic Chemistry Volume 90 1 123 .
E.S.H. El Ashry, E. Ramadan, A.A. Kassem & M. Hagar. 2005. 1 110 .
Hideaki Takashima, Lili Ren & Yoshinori Kanno. (2004) Catalytic decomposition of TCE under microwave. Catalysis Communications 5:6, pages 317-319.
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V. K. Ahluwalia & M. KidwaiV. K. Ahluwalia & M. Kidwai. 2004. New Trends in Green Chemistry. New Trends in Green Chemistry 59 72 .
Didier Villemin, Nathalie Bar, Mohamed Khalid, Paul-Alain Jaffrès & Jana Sopkova-de Oliveira Santos. (2019) Synthesis of 4-Arylideneisochroman-1,3-Dione under Microwave Irradiation. Journal of Chemical Research 2003:7, pages 433-435.
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Roger Arthur Sheldon & Herman van Bekkum. 2000. Fine Chemicals through Heterogeneous Catalysis. Fine Chemicals through Heterogeneous Catalysis 61 121 .
Carlo Fumagalli. 2001. Kirk-Othmer Encyclopedia of Chemical Technology. Kirk-Othmer Encyclopedia of Chemical Technology.
Alok Kumar Mitra, Aparna De & Nilay Karchaudhuri. (2019) Regeneration of Aldehydes from Bisulfite Addition Products in the Solid State using Montmorillonite KSF Clay under Microwave Irradiation. Journal of Chemical Research 23:9, pages 560-561.
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R.M. Martín-Aranda, M.A. Vicente-Rodríguez, J.M. López-Pestaña, A.J. López-Peinado, A. Jerez, J. de D. López-González & M.A. Bañares-Muñoz. (1997) Application of basic clays in microwave activated Michael additions: Preparation of N-substituted imidazoles. Journal of Molecular Catalysis A: Chemical 124:2-3, pages 115-121.
Crossref
M. Suarez, A. Loupy, E. Pérez, L Moran, G. Gerona, A. Morales & M. Autie. (1996) AN EFFICIENT PROCEDURE TO OBTAIN HEXAHYDROQUINOLEINES AND UNSYMMETRICAL 1,4-DIHYDROPYRIDINES USING SOLID INORGANIC SUPPORTS AND MICROWAVE ACTIVATION. Heterocyclic Communications 2:3.
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S. Caddick. (1995) Microwave assisted organic reactions. Tetrahedron 51:38, pages 10403-10432.
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. 1995. Comprehensive Organic Functional Group Transformations. Comprehensive Organic Functional Group Transformations 1161 1308 .
Peter T. Gallagher & Jeremy Gilmore. 1995. Comprehensive Organic Functional Group Transformations. Comprehensive Organic Functional Group Transformations 181 229 .
D. VILLEMIN, B. LABIAD & A. LOUPY. (2010) ChemInform Abstract: Clay Catalysis: A Convenient and Rapid Formation of Anhydride from Carboxylic Acid and Isopropenyl Acetate Under Microwave Irradiation.. ChemInform 25:14.
Crossref
R. M. Mart�n-Aranda, M. L. Rojas-Cervantes, A. J. L�pez-Peinado & J. de D. L�pez-Gonz�lez. (1994) Selective N-propargylation of imidazole under microwave irradiation using some magnesium oxides as catalysts. Catalysis Letters 25:3-4, pages 385-392.
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