Shawn E. Hunter, Ph.D.
Affiliations: | University of Michigan, Ann Arbor, Ann Arbor, MI |
Area:
Reaction kinetics and mechanisms, catalysis, energyGoogle:
"Shawn Hunter"Mean distance: 12.01 | S | N | B | C | P |
Parents
Sign in to add mentorPhillip E. Savage | grad student | 2005 | University of Michigan | |
(Acid -catalyzed organic synthesis in carbon dioxide-enriched high -temperature water.) |
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Publications
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Comisar CM, Hunter SE, Walton A, et al. (2008) Effect of pH on ether, ester, and carbonate hydrolysis in high-temperature water Industrial and Engineering Chemistry Research. 47: 577-584 |
Hunter SE, Savage PE. (2008) Quantifying rate enhancements for acid catalysis in CO2-enriched high-temperature water Aiche Journal. 54: 516-528 |
Hunter SE, Ehrenberger CE, Savage PE. (2006) Kinetics and mechanism of tetrahydrofuran synthesis via 1,4-butanediol dehydration in high-temperature water. The Journal of Organic Chemistry. 71: 6229-39 |
Savage PE, Hunter SE, Hoffee KL, et al. (2006) Bisphenol E decomposition in high-temperature water Industrial and Engineering Chemistry Research. 45: 7775-7780 |
Hunter SE, Lixiong L, Doug D, et al. (2006) Improving water spray efficacy for fire suppression via CO 2 addition at high pressures and low temperatures: Evidence for CO 2 clathrate hydrate formation Industrial and Engineering Chemistry Research. 45: 7275-7286 |
Hunter SE, Savage PE. (2004) Kinetics and mechanism of p-isopropenylphenol synthesis via hydrothermal cleavage of bisphenol A. The Journal of Organic Chemistry. 69: 4724-31 |
Hunter SE, Felczak CA, Savage PE. (2004) Synthesis of p-isopropenylphenol in high-temperature water Green Chemistry. 6: 222-226 |
Hunter SE, Savage PE. (2004) Recent advances in acid- and base-catalyzed organic synthesis in high-temperature liquid water Chemical Engineering Science. 59: 4903-4909 |
Hunter SE, Savage PE. (2003) Acid-catalyzed reactions in carbon dioxide-enriched high-temperature liquid water Industrial and Engineering Chemistry Research. 42: 290-294 |
Dunn JB, Burns ML, Hunter SE, et al. (2003) Hydrothermal stability of aromatic carboxylic acids Journal of Supercritical Fluids. 27: 263-274 |