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Synthetic Communications
An International Journal for Rapid Communication of Synthetic Organic Chemistry
Volume 25, 1995 - Issue 6
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Original Articles

Research on the Synthesis of 1,4-Dihydropyridines Under Microwave

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Pages 857-862 | Received 01 Aug 1994, Published online: 23 Sep 2006

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

Read on this site (5)

Dong-Mei Liu, Li-Ting Du, Jing Sun & Chao-Guo Yan. (2010) Efficient Synthesis of Alkylene Bridging Bisdihydropyridines. Synthetic Communications 40:9, pages 1333-1338.
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M. Syamala. (2005) A DECADE OF ADVANCES IN THREE-COMPONENT REACTIONS. Organic Preparations and Procedures International 37:2, pages 103-171.
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Jean Jacques Vanden Eynde, Nadège Labuche & Yves Van Haverbeke. (1997) Microwave-Mediated Domino Reactions in Dry Medium. Preparation of Dihydropyridinones and Pyridinones Structurally Related to Hantzsch Esters.. Synthetic Communications 27:21, pages 3683-3690.
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DavidS. Clarke & Robin Wood. (1996) A Facile One Stage Synthesis of Oxazolines Under Microwave Irradiation. Synthetic Communications 26:7, pages 1335-1340.
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Articles from other publishers (15)

Siyu Song, Yongchao Wang & Fuchao Yu. (2023) Construction of 1,4-Dihydropyridines: The Evolution of C4 Source. Topics in Current Chemistry 381:5.
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Zhen Wang, Qingjian Liu, Wenwen Zhang & Qing Chen. (2019) Facile Synthesis of Hantzsch 1,4-Dihydropyridines with Unsymmetrical 2,6-and 3,5-Substituents. Journal of Chemical Research 37:12, pages 748-750.
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Chad M. Kormos, Rachel M. Hull & Nicholas E. Leadbeater. (2009) Microwave Heating in Conjunction with UV Irradiation: a Tool for the Oxidation of 1,4-Dihydropyridines to Pyridines. Australian Journal of Chemistry 62:1, pages 51.
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Lauren M. Stencel, Chad M. Kormos, Keri B. Avery & Nicholas E. Leadbeater. (2009) Assessment and use of two silicon carbide multi-well plates for library synthesis and proteolytic digests using microwave heating. Organic & Biomolecular Chemistry 7:11, pages 2452.
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Matthew D. BowmanJennifer L. HolcombChad M. KormosNicholas E. LeadbeaterVictoria A. Williams. (2007) Approaches for Scale-Up of Microwave-Promoted Reactions. Organic Process Research & Development 12:1, pages 41-57.
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Jean Pierre Bazureau, Jack Hamelin, Florence Mongin & Françoise Texier‐Boullet. 2006. Microwaves in Organic Synthesis. Microwaves in Organic Synthesis 456 523 .
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 .
V. Sivamurugan, R. Suresh Kumar, M. Palanichamy & V. Murugesan. (2009) Synthesis of hantzsch 1,4‐dihydropyridines under solvent‐free condition using zn[(L)proline] 2 as lewis acid catalyst . Journal of Heterocyclic Chemistry 42:5, pages 969-974.
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Jean Vanden Eynde & Annie Mayence. (2003) Synthesis and Aromatization of Hantzsch 1,4-Dihydropyridines under Microwave Irradiation. An Overview. Molecules 8:4, pages 381-391.
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Séverine Torchy, Guy Cordonnier, Didier Barbry & Jean Vanden Eynde. (2002) Hydrogen Transfer from Hantzsch 1,4-Dihydropyridines to Carbon-Carbon Double Bonds under Microwave Irradiation. Molecules 7:7, pages 528-533.
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Christopher R. Strauss. 2002. Handbook of Green Chemistry and Technology. Handbook of Green Chemistry and Technology 397 415 .
Pelle Lidström, Jason Tierney, Bernard Wathey & Jacob Westman. (2001) Microwave assisted organic synthesis—a review. Tetrahedron 57:45, pages 9225-9283.
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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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Joseph E. ToomeyJr.Jr. & Ramiah Murugan. 1996. 209 230 .
Y.‐W. ZHANG, Z.‐X. SHEN, B. PAN, X.‐H. LU & M.‐H. CHEN. (2010) ChemInform Abstract: Research on the Synthesis of 1,4‐Dihydropyridines Under Microwave.. ChemInform 26:27.
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