James L. Skinner

Chemistry University of Wisconsin, Madison, Madison, WI 
statistical mechanics to investigate structure and dynamics of condensed phase systems
"James L. Skinner"


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Hannah Sevian grad student 1987-1992 UW Madison
Jeffery G. Saven grad student 1993 Columbia
Karl F. Everitt grad student 2000 UW Madison
Christopher P. Lawrence grad student 2003 UW Madison
Shuzhou Li grad student 2006 UW Madison
Jordan R. Schmidt grad student 2006 UW Madison
Benjamin M. Auer grad student 2008 UW Madison
Yu-Shan Lin grad student 2009 UW Madison
Fu LI grad student 2012 UW Madison
Craig J. Tainter grad student 2012 UW Madison
Lu Wang grad student 2007-2012 UW Madison
Joshua K. Carr grad student 2014 UW Madison
Liang Shi grad student 2009-2014 UW Madison
Brian B. Laird post-doc 1988-1989 Columbia
Eitan Geva post-doc 1995-1998 UW Madison
Steven A. Corcelli, Jr. post-doc 2002-2005 UW Madison
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Kananenka AA, Skinner JL. (2020) Unusually strong hydrogen bond cooperativity in particular (HO) clusters. Physical Chemistry Chemical Physics : Pccp
Baiz CR, Błasiak B, Bredenbeck J, et al. (2020) Vibrational Spectroscopic Map, Vibrational Spectroscopy, and Intermolecular Interaction. Chemical Reviews
Kananenka AA, Strong SE, Skinner JL. (2020) Dephasing and Decoherence in Vibrational and Electronic Line Shapes. The Journal of Physical Chemistry. B
Strong SE, Hestand NJ, Kananenka AA, et al. (2019) IR Spectroscopy Can Reveal the Mechanism of K Transport in Ion Channels. Biophysical Journal
Kananenka AA, Yao K, Corcelli SA, et al. (2019) Machine Learning for Vibrational Spectroscopic Maps. Journal of Chemical Theory and Computation
Kananenka AA, Hestand NJ, Skinner JL. (2019) OH-Stretch Raman Multivariate Curve Resolution Spectroscopy of HOD/HO Mixtures. The Journal of Physical Chemistry. B
Hestand NJ, Strong SE, Shi L, et al. (2019) Mid-IR spectroscopy of supercritical water: From dilute gas to dense fluid. The Journal of Chemical Physics. 150: 054505
Ni Y, Hestand NJ, Skinner JL. (2018) Communication: Diffusion constant in supercooled water as the Widom line is crossed in no man's land. The Journal of Chemical Physics. 148: 191102
Strong SE, Shi L, Skinner JL. (2018) Percolation in supercritical water: Do the Widom and percolation lines coincide? The Journal of Chemical Physics. 149: 084504
Ni Y, Skinner JL. (2016) IR spectra of water droplets in no man's land and the location of the liquid-liquid critical point. The Journal of Chemical Physics. 145: 124509
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