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Abreu Group - Chemistry of natural products. Phytochemistry of medicinal plants. Pharmacognosy.

Aggarwal Group - Development of new catalytic processes for asymmetric synthesis. Development of new methodology and its applications in synthesis. Total synthesis of biologically important targets.

Appella Group - Conformational rigidification in nucleic acid mimics. Development of functionalized polyamines for the molecular recognition of folded RNA. Reactivation of mutant p53 with small organic molecules.

Aubé Group - Development of new synthetic techniques, total synthesis, and the study of peptidomimetics.

Austin Group - Functional Genomics through chemical and biological diversity. Synthesis and evaluation of natural products that we believe have RNA as their primary cellular target.

Bailey Group - Development of new synthetic methodology using novel main-group organometallic chemistry.

Baldwin Group - Biomimetic and total synthesis, and beta-lactam biosynthesis.

Baran Laboratory - Total synthesis.

Barbas Laboratory - Catalytic antibodies, organocatalysis, protein-like DNA enzymes, therapeutic antibodies, molecular recognition of DNA by proteins, phage display.

Batey Group - Organoboron chemistry. Transition metal and lanthanide catalysis. Cycloadditions. Reactive intermediates. Heterocycles and guanidines. Combinatorial chemistry.

Bodwell Group - Novel aromatics: nonplanar aromatic compounds, cyclophanes and molecular switches.

Boger Group - Total synthesis of biologically active natural products, the development of new synthetic methods, heterocyclic chemistry, bioorganic and medicinal chemistry, combinatorial chemistry, the study of DNA-agent interactions, and the chemistry of antitumor antibiotics.

Breslow Group - Design and synthesis of new molecules with interesting properties.

Brook Group - Silicon chemistry.

Buchwald Group - Development of new chemistry, including new chemical reactions that can be studied from a variety of viewpoints encompassing the fields of organic synthesis, physical organic chemistry, and organometallic chemistry.

Butkus Group - Stereoselective synthesis of bicyclic and polycyclic structures.

Capretta Group - Organic synthesis and medicinal chemistry, transition metal catalysis, organophosphorus chemistry, parallel synthesis, drug discovery.

Carreira Group - Asymmetric synthesis of biologically active, stereochemically complex, natural products.

Carter Group - Synthesis of Azaspiracid, Amphidinolide B1, Vacidin A and TMC-95A.

Charette Group - Stereoselective Synthesis.

Cook Group - Electrophilic pi-allyl palladium complexes and nucleophilic sigma-allyl indium complexes.

Crimmins Group - Development of new synthetic methodology and new synthetic strategies and their application to the total synthesis of biologically active and structurally novel natural products.

Crudden Group - Organic chemistry, materials and catalysis.

Curran Group - Development of radical methodology, fluorous tagging systems, and total synthesis.

Davies Group - Development of novel asymmetric transformations and concepts. Total synthesis of natural products of biological significance. Design of unique supramolecular architectures. Medicinal chemistry. Chemical genomics and enantioselective recognition processes.

Davis Group - Glycoprocessing enzyme inhibition and mechanism. Exploring enzyme systems. Novel drug delivery systems. Synthesis and use of glycoproteins. Glycoside and oligosaccharide synthesis.

Dolbier Jr. Group - Study of the reactivity of free radicals and other reactive fluoroorganic compounds.

Donohoe Group - Asymmetric synthesis and the application of stereoselectve oxidation and reduction reactions to total synthesis.

Dudley Group - Devise, develop, and apply new ideas in organic chemistry to the efficient synthesis of interesting molecules, particularly natural products with medicinal applications.

Ellman Group - Design, synthesis, and evaluation of small molecule libraries. A particular emphasis is placed on therapeutically important receptor or enzyme classes that require the development of new combinatorial design strategies and/or synthesis chemistry.

Evans Group - Useful information to the chemical community that is relevant to research and teaching activities.

Fallis Group - Structural, synthetic, medicinal, and functional organic chemistry.

Finn Group - Appreciation for the mechanisms of chemical reactivity and the desire to place efficient bond-making at the service of chemistry, biology, and materials science.

Floss Group - Bioorganic and natural products chemistry.

Forsyth Group - Synthesis of complex, biologically active organic molecules based upon natural product templates.

Fu Group - Synthetic organic and organometallic chemistry.

Garner Group - Synthetic methodology, total synthesis and bioorganic chemistry.

Gevorgyan Group - Discovery of new metal-catalyzed reactions, investigation of their mechanisms and, based on these new reactions, development of novel methodologies for synthetic organic chemistry.

Ghosh Group - Total synthesis, asymmetric synthesis and bio-inorganic and medicinal chemistry.

Gilheany Group - Enantioselective synthesis, organophosphorus chemistry, organic chemistry of Main Group elements and the synthesis of medium rings and small multicyclic heterocycles.

Gouverneur group - Biocatalysis. New methodologies for the preparation of phosphorus and halogen containing compounds.

Hanessian Group - Total synthesis. Medicinal chemistry and drug design. Immunochemistry and drug targeting. Glycosidic linkage in life processes. Computer aided chemistry and molecular modeling.

Hanson Group - Development of new synthetic routes to structurally diverse phosphorus- and sulfur-containing small molecules that will serve as building blocks for the synthesis of novel pharmaceutical agents and various natural products.

Harman Group - Coordination chemistry, organometallic chemistry and organic synthesis.

Harrowven Group - Research on natural product synthesis. Includes information on tandem and cascade reactions and new synthetic methods.

Hartwig Group - Discover, develop and understand new transition metal-catalyzed reactions.

Hirama Group - Organic synthesis of natural products, and related artificial functional molecules; molecular recognition and mechanism of interactions between these molecules and biopolymers.

Hoveyda Group - Organometallic chemistry, mechanistic organic chemistry, combinatorial chemistry and organic synthesis.

Howell Group - Exploitation of strained, compact heterocycles. Manipulation of oxirane, oxetane and enol cyclic ether moieties for the synthesis of natural products and analogs of biological importance.

Hsieh-Wilson Group - Glycosaminoglycans and fucosyl saccharides. Dynamic glycosylation.


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