Erick M. Pasciak, Ph.D.

Affiliations: 
2014 Chemistry Indiana University, Bloomington, Bloomington, IN, United States 
Area:
Inorganic Chemistry, Organic Chemistry, Oncology
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"Erick Pasciak"
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Parents

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Dennis G. Peters grad student 2014 Indiana University
 (Esters, amides, and electrons ... oh my!)
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Publications

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Hosseini S, Thapa B, Medeiros MJ, et al. (2020) Electrosynthesis of a Biaurone by Controlled Dimerization of Flavone: Mechanistic Insight and Large-Scale Application. The Journal of Organic Chemistry
Peters DG, McGuire CM, Pasciak EM, et al. (2017) Electrochemical Dehalogenation of Organic Pollutants Journal of the Mexican Chemical Society. 58
Pasciak EM, Rittichier JT, Chen CH, et al. (2015) Electroreductive dimerization of coumarin and coumarin analogues at carbon cathodes. The Journal of Organic Chemistry. 80: 274-80
Pasciak EM, Peters DG. (2014) Reduction of substituted phenyl 2-chloroacetates at silver cathodes: Electrosynthesis of coumarins Journal of the Electrochemical Society. 161: G98-G102
Henderson RJ, Buehler NR, Pasciak EM, et al. (2014) Electrochemical reduction of a bromo propargyloxy ester at silver cathodes in dimethylformamide Journal of the Electrochemical Society. 161: G128-G132
Ourari A, Ouennoughi Y, Aggoun D, et al. (2014) Synthesis, characterization, and electrochemical study of a new tetradentate nickel(II)-Schiff base complex derived from ethylenediamine and 5′-(N-methyl-N-phenylaminomethyl)-2′-hydroxyacetophenone Polyhedron. 67: 59-64
Pasciak EM, Sengupta A, Mubarak MS, et al. (2014) Electrochemical reduction of 2-chloro-N-phenylacetamides at carbon and silver cathodes in dimethylformamide Electrochimica Acta. 127: 159-166
Peverly AA, Pasciak EM, Strawsine LM, et al. (2013) Electrochemical reduction of decabromodiphenyl ether at carbon and silver cathodes in dimethylformamide and dimethyl sulfoxide Journal of Electroanalytical Chemistry. 704: 227-232
Pasciak EM, Hochstetler SE, Mubarak MS, et al. (2013) Electrochemical reduction of phthalide at carbon cathodes in dimethylformamide: Effects of supporting electrolyte and gas chromatographic injector-port chemistry on the product distribution Electrochimica Acta. 113: 557-563
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