Correlation between pKa and Reactivity of Quinuclidine-Based Catalysts in the Baylis-Hillman Reaction: Discovery of Quinuclidine as Optimum Catalyst Leading to Substantial Enhancement of Scope Aggarwal, V. K.; Emme, I.; Fulford, S. Y. J. Org. Chem. (Article); 2003; 68(3); 692-700. doi:10.1021/jo026671s
Baylis-Hillman Mechanism: A New Interpretation in Aprotic Solvents Price, K. E.; Broadwater, S. J.; Jung, H. M.; McQuade, D. T.; Org. Lett., 2005, 7(1), 147-150. doi:10.1021/ol047739o
A New Interpretation of the Baylis-Hillman Mechanism Price, K. E.; Broadwater, S. J.; Walker, B. J.; McQuade, D. T. J. Org. Chem. (Article); 2005; 70(10); 3980-3987. doi:10.1021/jo050202j
Synthetic potential of the tertiary-amine-catalysed reaction of activated vinyl carbanions with aldehydes Drewes, S. E.; Roos, G. H. P.; Tetrahedron1988, 44, 4653-4670. doi:10.1016/S0040-4020(01)86168-8
Mechanism of the Morita-Baylis-Hillman Reaction: A Computational Investigation Raphael Robiette, Varinder K Aggarwal, and Jeremy N. Harvey J. AM. CHEM. SOC.2007, 129, 15513-15525 doi:10.1021/ja0717865
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Different Reaction Patterns in the Baylis-Hillman Reaction of Aryl Aldehydes with Phenyl Vinyl Ketone, Phenyl Acrylate and Phenyl Thioacrylate Min Shi, Chao-Qun Li and Jian-Kang Jiang Molecules2002, 7, 721-733 Full Article
Unprecedented reactivity in the Morita–Baylis–Hillman reaction; intramolecular -alkylation of enones using saturated alkyl halides Marie E. Krafft, Kimberly A. Seibert, Thomas F. N. Haxell and Chitaru Hirosawa Chemical Communications, 2005, (46), 5772 - 5774 DOI: 10.1039/b512665g Abstract