Christopher D. Cox, Ph.D.

Affiliations: 
2000 Johns Hopkins University, Baltimore, MD 
Area:
Synthetic Organic Chemistry and Catalysis
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Thomas Lectka grad student 2000 Johns Hopkins
 (Catalysis of amide isomerization: Investigations into the possible mechanisms of action of peptidyl prolyl isomerase enzymes.)
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Ferraris D, Young B, Cox C, et al. (2002) Catalytic, enantioselective alkylation of alpha-imino esters: the synthesis of nonnatural alpha-amino acid derivatives. Journal of the American Chemical Society. 124: 67-77
Cox C, Wack H, Lectka T. (1999) Strong Hydrogen Bonding to the Amide Nitrogen Atom in an "Amide Proton Sponge": Consequences for Structure and Reactivity. Angewandte Chemie (International Ed. in English). 38: 798-800
Cox C, Wack H, Lectka T. (1999) Nucleophilic catalysis of amide isomerization [17] Journal of the American Chemical Society. 121: 7963-7964
Cox C, Wack H, Lectka T. (1999) Eine starke Wasserstoffbrücke zu einem Amid-Stickstoffatom in einem „Amid-Protonenschwamm”: Konsequenzen für Struktur und Reaktivität Angewandte Chemie. 111: 864-867
Ferraris D, Young B, Cox C, et al. (1998) Diastereo- and Enantioselective Alkylation of alpha-Imino Esters with Enol Silanes Catalyzed by (R)-Tol-BINAP-CuClO(4).(MeCN)(2). The Journal of Organic Chemistry. 63: 6090-6091
Cox C, Lectka T. (1998) Solvent Effects on the Barrier to Rotation in Carbamates. The Journal of Organic Chemistry. 63: 2426-2427
Cox C, Lectka T. (1998) Intramolecular catalysis of amide isomerization: Kinetic consequences of the 5-NH- -N(a) hydrogen bond in prolyl peptides Journal of the American Chemical Society. 120: 10660-10668
Cox C, Young, VG, et al. (1997) Intramolecular Catalysis of Amide Isomerization Journal of the American Chemical Society. 119: 2307-2308
Cox C, Ferraris D, Murthy NN, et al. (1996) Copper(II)-catalyzed amide isomerization: Evidence for N-coordination Journal of the American Chemical Society. 118: 5332-5333
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