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Dive into the research topics where Abhisek Banerjee is active.

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Featured researches published by Abhisek Banerjee.


Journal of the American Chemical Society | 2008

[4 + 2] Cycloadditions of N-Alkenyl Iminium Ions : Structurally Complex Heterocycles from a Three-Component Diels-Alder Reaction Sequence

Nihar Sarkar; Abhisek Banerjee; Scott G. Nelson

N-Alkenyl iminium ions serve as conduits to three-component [4 + 2] cycloaddition reactions accessing structurally and stereochemically diverse piperidine derivatives. These cationic 2-azadienes participate in endo- or exo-selective [4 + 2] cycloadditions with electron-rich and neutral alkene dienophiles to generate a tetrahydropyridinium ion as the initial cycloadduct. In situ nucleophilic addition to the cycloaddition-derived iminium ion completes the three-component coupling sequence and affords a versatile synthesis of structurally complex piperidines.


Journal of Carbohydrate Chemistry | 2005

IMPROVED SYNTHESIS OF 1-BENZENESULFINYL PIPERIDINE AND ANALOGS FOR THE ACTIVATION OF THIOGLYCOSIDES IN CONJUNCTION WITH TRIFLUOROMETHANESULFONIC ANHYDRIDE.

David Crich; Abhisek Banerjee; Wenju Li; Qingjia Yao

An improved protocol for the large‐scale production of 1‐benzenesulfinyl piperidine and other sulfinamides is described. It is demonstrated that 1‐benzenesulfinyl pyrrolidine and N,N‐diethyl benzenesulfinamide function analogously to 1‐benzenesulfinyl piperidine in the trifluoromethanesulfonic anhydride‐mediated activation of thioglycosides, and that their less crystalline nature enables them to be used at −78°C as opposed to the −60°C required to keep 1‐benzenesulfinyl piperidine in solution. N,N-Dicyclohexyl benzenesulfinamide does not activate thioglycosides in combination with trifluoromethanesulfonic anhydride, which is attributed to its greater steric bulk. * Dedicated with respect to the memory of Professor Jacques H. Van Boom.


Organic Letters | 2009

Triple hybrids of steroids, spiroketals, and oligopeptides as new biomolecular chimeras.

Abhisek Banerjee; Eduard Sergienko; Stefan Vasile; Vineet Gupta; Kristiina Vuori; Peter Wipf

An oxidative enol ether rearrangement was the key methodology in the construction of steroid-spiroketal-RGD peptides. Biological studies demonstrated potent integrin CD11b/CD18 antagonistic effects.


Journal of the American Chemical Society | 2007

Native chemical ligation at phenylalanine.

David Crich; Abhisek Banerjee


Accounts of Chemical Research | 2007

Chemistry of the Hexahydropyrrolo[2,3-b]indoles: Configuration, Conformation, Reactivity, and Applications in Synthesis

David Crich; Abhisek Banerjee


Tetrahedron-asymmetry | 2005

Disarming, non-participating 2-O-protecting groups in manno- and rhamnopyranosylation: scope and limitations of sulfonates, vinylogous esters, phosphates, cyanates, and nitrates

David Crich; Thomas K. Hutton; Abhisek Banerjee; Prasanna Jayalath; John Picione


Journal of the American Chemical Society | 2006

Stereocontrolled synthesis of the D- and L-glycero-beta-D-manno-heptopyranosides and their 6-deoxy analogues. Synthesis of methyl alpha-l-rhamno-pyranosyl-(1-->3)-D-glycero-beta-D-manno-heptopyranosyl- (1-->3)-6-deoxy-glycero-beta-D-manno-heptopyranosyl-(1-->4)-alpha-L- rhamno-pyranoside, a tetrasaccharide subunit of the lipopolysaccharide from Plesimonas shigelloides.

David Crich; Abhisek Banerjee


Journal of Organic Chemistry | 2006

Expedient Synthesis of syn-β-Hydroxy-α-amino acid derivatives: Phenylalanine, Tyrosine, Histidine and Tryptophan

David Crich; Abhisek Banerjee


Organic Letters | 2005

Synthesis and Stereoselective Glycosylation of d- and l-glycero-β-d-manno-Heptopyranoses

David Crich; Abhisek Banerjee


Archive | 2009

Stereocontrolled Synthesis of the D- and L-glycero-β-D-manno- heptopyranosides and their 6-Deoxy Analogs. Synthesis of Methyl

David Crich; Abhisek Banerjee

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David Crich

Wayne State University

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John Picione

University of Illinois at Chicago

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Peter Wipf

University of Pittsburgh

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Prasanna Jayalath

University of Illinois at Chicago

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Qingjia Yao

University of Illinois at Chicago

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Thomas K. Hutton

University of Illinois at Chicago

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Vineet Gupta

Rush University Medical Center

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Wenju Li

University of Illinois at Chicago

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