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Accounts of Chemical Research | 2008

Bifunctional Asymmetric Catalysis: Cooperative Lewis Acid/Base Systems

Daniel H. Paull; Ciby J. Abraham; Michael T. Scerba; Ethan Alden-Danforth; Thomas Lectka

In the field of catalytic, asymmetric synthesis, there is a growing emphasis on multifunctional systems, in which multiple parts of a catalyst or multiple catalysts work together to promote a specific reaction. These efforts, in part, are result-driven, and they are also part of a movement toward emulating the efficiency and selectivity of natures catalysts, enzymes. In this Account, we illustrate the importance of bifunctional catalytic methods, focusing on the cooperative action of Lewis acidic and Lewis basic catalysts by the simultaneous activation of both electrophilic and nucleophilic reaction partners. For our part, we have contributed three separate bifunctional methods that combine achiral Lewis acids with chiral cinchona alkaloid nucleophiles, for example, benzoylquinine (BQ), to catalyze highly enantioselective cycloaddition reactions between ketene enolates and various electrophiles. Each method requires a distinct Lewis acid to coordinate and activate the electrophile, which in turn increases the reaction rates and yields, without any detectable influence on the outstanding enantioselectivities inherent to these reactions. To place our results in perspective, many important contributions to this emerging field are highlighted and our own reports are chronicled.


Journal of the American Chemical Society | 2006

Catalytic, Enantioselective Bifunctional Inverse Electron Demand Hetero-Diels¿Alder Reactions of Ketene Enolates and o-Benzoquinone Diimides

Ciby J. Abraham; Daniel H. Paull; Michael T. Scerba; James W. Grebinski; Thomas Lectka


Journal of the American Chemical Society | 2006

Catalytic, enantioselective [4 + 2]-cycloadditions of ketene enolates and o-quinones : Efficient entry to chiral, α-oxygenated carboxylic acid derivatives

Tefsit Bekele; Meha H. Shah; Jamison Wolfer; Ciby J. Abraham; and Anthony Weatherwax; Thomas Lectka


Angewandte Chemie | 2006

Catalytic, Asymmetric Synthesis of 1,4‐Benzoxazinones: A Remarkably Enantioselective Route to α‐Amino Acid Derivatives from o‐Benzoquinone Imides

Jamison Wolfer; Tefsit Bekele; Ciby J. Abraham; Cajetan Dogo-Isonagie; Thomas Lectka


Journal of the American Chemical Society | 2008

A Surprising Mechanistic “Switch” in Lewis Acid Activation: A Bifunctional, Asymmetric Approach to α-Hydroxy Acid Derivatives

Ciby J. Abraham; Daniel H. Paull; Tefsit Bekele; Michael T. Scerba; Travis Dudding; Thomas Lectka


Journal of Organic Chemistry | 2007

An asymmetric, bifunctional catalytic approach to non-natural α-amino acid derivatives

Daniel H. Paull; Ethan Alden-Danforth; Jamison Wolfer; Cajetan Dogo-Isonagie; Ciby J. Abraham; Thomas Lectka


Synlett | 2009

Diastereoselective Synthesis of trans-β-Lactams Using a Simple Multifunctional Catalyst

Ciby J. Abraham; Daniel H. Paull; Cajetan Dogo-Isonagie; Thomas Lectka


Synfacts | 2007

Bifunctional Inverse Electron Demand Hetero-Diels-Alder Reactions

Ciby J. Abraham; Daniel H. Paull; Michael T. Scerba; James W. Grebinski; Thomas Lectka


Synfacts | 2007

Highly Enantioselective Synthesis of 1,4-Benzoxazinones and α-Amino Acids

J. Wolfer; T. Bekele; Ciby J. Abraham; C. Dogo-Isonagie; Thomas Lectka


Synfacts | 2006

Enantioselective [4+2] Cycloadditions of Ketenes with o-Quinones

T. Bekele; M. H. Shah; J. Wolfer; Ciby J. Abraham; A. Weatherwax; Thomas Lectka

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Thomas Lectka

Johns Hopkins University

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Jamison Wolfer

Johns Hopkins University

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Meha H. Shah

Johns Hopkins University

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Tefsit Bekele

Johns Hopkins University

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Pratap Singh

Johns Hopkins University

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