Krishnakumar Ranganathan, Ph.D.

Affiliations: 
2004 University of Illinois at Chicago, Chicago, IL, United States 
Area:
diastereoselective free radical chemistry, acyl radical chemistry, enantioselective synthesis of á-disubstituted amino acids, and carbohydrate chemistry
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"Krishnakumar Ranganathan"
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David Crich grad student 2004 University of Illinois, Chicago
 (Reductive generation, stereoselective trapping and memory effects of alkene radical cations.)
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Seo H, Jun ME, Ranganathan K, et al. (2014) Ground-state elevation approach to suppress side reactions in gold-sensing systems based on alkyne activation. Organic Letters. 16: 1374-7
Bercot EA, Caille S, Bostick TM, et al. (2008) Diastereoselective palladium-catalyzed alpha-arylation of 4-substituted cyclohexyl esters. Organic Letters. 10: 5251-4
Crich D, Hutton TK, Ranganathan K. (2005) Is there a homolytic substitution chemistry (SH2) of sulfones? The Journal of Organic Chemistry. 70: 7672-8
Crich D, Ranganathan K. (2005) Stereochemical memory effects in alkene radical cation/anion contact ion pairs: effect of substituents, and models for diastereoselectivity. Journal of the American Chemical Society. 127: 9924-9
Crich D, Ranganathan K, Neelamkavil S, et al. (2003) Tandem polar/radical crossover sequences for the formation of fused and bridged bicyclic nitrogen heterocycles involving radical ionic chain reactions, and alkene radical cation intermediates, performed under reducing conditions: scope and limitations. Journal of the American Chemical Society. 125: 7942-7
Crich D, Ranganathan K, Rumthao S, et al. (2003) Asymmetric synthesis of highly substituted beta-nitro alcohols and enantiomerically enriched 4,4,5-trisubstituted oxazolidinones. The Journal of Organic Chemistry. 68: 2034-7
Crich D, Ranganathan K. (2002) Diastereoselectivity in the cyclization of alkene radical cations generated under non-oxidizing conditions: contact ion pairs and memory effects. Journal of the American Chemical Society. 124: 12422-3
Crich D, Ranganathan K, Huang X. (2001) Generation and reaction of alkene radical cations under nonoxidizing conditions: synthesis of the pyrrolizidine nucleus. Organic Letters. 3: 1917-9
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