The goal of the proposed research is to develop selective methods for organic synthesis with strained molecules and rhodium carbenoids. The proposed research involves development of stereoselective transformations of strained three-membered ring compounds. Modes of reactivity that will be explored will include Diels-Alder reactions, and tandem Ring expansion/Claisen rearrangments of allyl cycloprop-2-ene carboxylates. Of particular interest is the unusual ability of strained molecules to control the stereochemical outcome of such reactions. Another goal of the proposed research is to expand the scope of Rh-carbenoid chemistry. Of particular interest is the development of ligands that facilitate reactions of )-alkyldiazo compounds, which are susceptible to (R)- hydride elimination. With insight from computational studies, catalysts will be designed that can navigate away from undesired reaction pathways and provide desired products with maximum selectivity. Because Rh-carbeniods are critical to the synthesis of cyclopropenes and cyclopropanes, addressing the limitations of the chemistry of Rhcarbenes is integral to advancing all aims of this proposal. A final aspect of this program will be to develop general, stereoselective methods for the synthesis of medium ring trans-cycloalkenes. Also developed will be new stereospecific reaction chemistry that transfers the planar chirality of the alkene to newly created stereocenters in products. Reactions to be studied include transannular cyclization reactions, and a stereoselective protocol for synthesizing trans-1,2-diols. Applications will include the development of a unified approach to the synthesis of a family of pyrrolizidine alkaloids.

Agency
National Institute of Health (NIH)
Institute
National Institute of General Medical Sciences (NIGMS)
Type
Research Project (R01)
Project #
2R01GM068640-06
Application #
7736059
Study Section
Synthetic and Biological Chemistry B Study Section (SBCB)
Program Officer
Schwab, John M
Project Start
2004-07-01
Project End
2013-08-31
Budget Start
2009-09-30
Budget End
2010-08-31
Support Year
6
Fiscal Year
2009
Total Cost
Indirect Cost
Name
University of Delaware
Department
Chemistry
Type
Schools of Arts and Sciences
DUNS #
059007500
City
Newark
State
DE
Country
United States
Zip Code
19716
Taylor, Michael T; Fox, Joseph M (2015) Biosynthesis of the C15-acetogenin laurepoxide may involve bromine-induced skeletal rearrangement of a ?4-oxocene precursor. Tetrahedron Lett 56:3560-3563
Darko, Ampofo; Wallace, Stephen; Dmitrenko, Olga et al. (2014) Conformationally Strained trans-Cyclooctene with Improved Stability and Excellent Reactivity in Tetrazine Ligation. Chem Sci 5:3770-3776
Selvaraj, Ramajeyam; Fox, Joseph M (2013) trans-Cyclooctene--a stable, voracious dienophile for bioorthogonal labeling. Curr Opin Chem Biol 17:753-60
Xie, Xiaocong; Li, Yi; Fox, Joseph M (2013) Selective syntheses of ?(?,?) and ?(?,?) butenolides from allylic cyclopropenecarboxylates via tandem ring expansion/[3,3]-sigmatropic rearrangements. Org Lett 15:1500-3
Panish, Robert; Chintala, Srinivasa R; Boruta, David T et al. (2013) Enantioselective synthesis of cyclobutanes via sequential Rh-catalyzed bicyclobutanation/Cu-catalyzed homoconjugate addition. J Am Chem Soc 135:9283-6
Fisher, Laural A; Smith, Natalee J; Fox, Joseph M (2013) Chiral cyclopropenyl ketones: reactive and selective Diels-Alder dienophiles. J Org Chem 78:3342-8
Hassink, Matthew D; Fox, Joseph M (2012) Functionalized Cyclopropenes and Methylenecyclopropenes from Dianions of 3-Hydroxymethylcyclopropenes. Synthesis (Stuttg) 44:2843-2850
Tarwade, Vinod; Selvaraj, Ramajeyam; Fox, Joseph M (2012) Facially selective Cu-catalyzed carbozincation of cyclopropenes using arylzinc reagents formed by sequential I/Mg/Zn exchange. J Org Chem 77:9900-4
Boruta, David T; Dmitrenko, Olga; Yap, Glenn P A et al. (2012) Rh(2)(S-PTTL)(3)TPA-A Mixed Ligand Dirhodium(II) Catalyst for Enantioselective Reactions of ?-Alkyl-?-Diazoesters. Chem Sci 3:1589-1593
DeAngelis, Andrew; Dmitrenko, Olga; Fox, Joseph M (2012) Rh-catalyzed intermolecular reactions of cyclic ýý-diazocarbonyl compounds with selectivity over tertiary C-H bond migration. J Am Chem Soc 134:11035-43

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