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Synthetic Communications
An International Journal for Rapid Communication of Synthetic Organic Chemistry
Volume 20, 1990 - Issue 11
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Original Articles

Terminal Hydroxyalkyl Acrylates as Substrates for Baylis-Hillman Reaction

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Pages 1611-1615 | Received 01 Mar 1990, Published online: 24 Oct 2006

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Maja Brand, SiegfriedE. Drewes, NevilleD. Emslie & AbdullahA. Khan. (1991) Synthesis of Chiral α-Hydroxyphenyl Crotonates. Synthetic Communications 21:6, pages 727-732.
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Articles from other publishers (23)

Deevi Basavaiah & Ram Tilak Naganaboina. (2018) The Baylis–Hillman reaction: a new continent in organic chemistry – our philosophy, vision and over three decades of research. New Journal of Chemistry 42:17, pages 14036-14066.
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Alexey V. Salin, Albert R. Fatkhutdinov, Anton V. Il'in & Vladimir I. Galkin. (2014) Effect of Anchimeric Assistance in the Reaction of Triphenylphosphine with α,β‐Unsaturated Carboxylic Acids. International Journal of Chemical Kinetics 46:4, pages 206-215.
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Ana Gradillas, Efres Belmonte, Rondes Ferreira da Silva & Javier Pérez‐Castells. (2014) Hydroxy Chalcogenide‐Promoted Morita–Baylis–Hillman Alkylation Reaction: Intermolecular Applications with Alkyl Halides as Electrophiles. European Journal of Organic Chemistry 2014:9, pages 1935-1941.
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Min Shi, Feijun Wang, Mei-Xin Zhao & Yin WeiMei-Xin Zhao, Yin Wei & Min Shi. 2011. The Chemistry of the Morita-Baylis-Hillman Reaction. The Chemistry of the Morita-Baylis-Hillman Reaction 1 78 .
Deevi Basavaiah, Bhavanam Sekhara Reddy & Satpal Singh Badsara. (2010) Recent Contributions from the Baylis−Hillman Reaction to Organic Chemistry. Chemical Reviews 110:9, pages 5447-5674.
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Irene Suarez del Villar, Ana Gradillas, Gema Domínguez & Javier Pérez-Castells. (2010) Morita−Baylis−Hillman Reaction of Lactams and Lactones with Alkyl Halides and Epoxides Catalyzed by Hydroxysulfides. Organic Letters 12:10, pages 2418-2421.
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. (2007) An Efficient Synthesis of an Apoptosis Inducer, F-3-2-5 by Using Octanol-Accelerated Baylis-Hillman Reaction. Bulletin of the Korean Chemical Society 28:2, pages 179-180.
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San-Hu Zhao, Hai-Rong Zhang, Li-Heng Feng & Zhao-Bin Chen. (2006) Pyridinium ionic liquids-accelerated amine-catalyzed Morita–Baylis–Hillman reaction. Journal of Molecular Catalysis A: Chemical 258:1-2, pages 251-256.
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Palakodety Radha Krishna, A. Manjuvani, V. Kannan & G.V.M. Sharma. (2004) Sulpholane––A new solvent for the Baylis–Hillman reaction. Tetrahedron Letters 45:6, pages 1183-1185.
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Deevi Basavaiah, Anumolu Jaganmohan Rao & Tummanapalli Satyanarayana. (2003) Recent Advances in the Baylis−Hillman Reaction and Applications. Chemical Reviews 103:3, pages 811-892.
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Eun Jin Kim, Soo Y. Ko & Choong Eui Song. (2003) Acceleration of the Baylis–Hillman Reaction in the Presence of Ionic Liquids . Helvetica Chimica Acta 86:3, pages 894-899.
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Varinder K. AggarwalIngo EmmeSarah Y. Fulford. (2003) Correlation between p K a and Reactivity of Quinuclidine-Based Catalysts in the Baylis−Hillman Reaction:  Discovery of Quinuclidine as Optimum Catalyst Leading to Substantial Enhancement of Scope . The Journal of Organic Chemistry 68:3, pages 692-700.
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Peter Longer. 2003. Organic Synthesis Set. Organic Synthesis Set 165 177 .
Peter Langer. 2003. Organic Synthesis Highlights V. Organic Synthesis Highlights V 165 177 .
Peter Langer. (2000) New Strategies for the Development of an Asymmetric Version of the Baylis–Hillman Reaction. Angewandte Chemie 39:17, pages 3049-3052.
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Peter Langer. (2000) Neue Strategien zur Entwicklung einer asymmetrischen Variante der Baylis-Hillman-Reaktion. Angewandte Chemie 112:17, pages 3177-3180.
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Wenge Li, Zhaoguo Zhang, Dengming Xiao & Xumu Zhang. (2000) Synthesis of Chiral Hydroxyl Phospholanes from d -mannitol and Their Use in Asymmetric Catalytic Reactions . The Journal of Organic Chemistry 65:11, pages 3489-3496.
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Engelbert Ciganek. 2004. Organic Reactions. Organic Reactions 201 350 .
István E. Marko, Paul R. Giles & Nigel J. Hindley. (1997) Catalytic enantioselective Baylis-Hillman reactions. Correlation between pressure and enantiomeric excess. Tetrahedron 53:3, pages 1015-1024.
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Deevi Basavaiah, Polisetti Dharma Rao & Rachakonda Suguna Hyma. (1996) The Baylis-Hillman reaction: A novel carbon-carbon bond forming reaction. Tetrahedron 52:24, pages 8001-8062.
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Deevi Basavaiah & Pakala K. S. Sarma. (1992) Applications of Baylis–Hillman coupling products: a remarkable reversal of stereochemistry from esters to nitriles: a simple synthesis of (2E)-2-methylalk-2-en-1-ols and (2Z)-2-methylalk-2-enenitriles. J. Chem. Soc., Chem. Commun. 0:13, pages 955-957.
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Yves Fort, Marie Christine Berthe & Paul Caubere. (1992) The ‘Baylis - Hillman Reaction’ mechanism and applications revisited. Tetrahedron 48:31, pages 6371-6384.
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D. BASAVAIAH & P. K. S. SARMA. (2010) ChemInform Abstract: Terminal Hydroxyalkyl Acrylates as Substrates for Baylis‐Hillman Reaction.. ChemInform 22:5.
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