Skinner Group

Prof. Nicholas Hestand

IR Spectroscopy Can Reveal the Mechanism of K+ Transport in Ion Channels

Steven E. Strong*, Nicholas J. Hestand*, Alexei A. Kananenka, Martin T. Zanni, J. L. Skinner. IR Spectroscopy Can Reveal the Mechanism of K+ Transport in Ion Channels. Biophys. J. 118(1) 254-261. 2020.

OH-Stretch Raman Multivariate Curve Resolution Spectroscopy of HOD/H2O Mixtures

Alexei A. Kananenka, Nicholas J. Hestand and J. L. Skinner. OH-Stretch Raman Multivariate Curve Resolution Spectroscopy of HOD/H2O Mixtures. J. Phys. Chem. B. 2019. Vol. 123, Pg. 5139-5146.

Mid-IR spectroscopy of supercritical water: From dilute gas to dense fluid

Nicholas J. Hestand*, Steven E. Strong*, Liang Shi, and J. L. Skinner. Mid-IR spectroscopy of supercritical water: From dilute gas to dense fluid. J. Chem. Phys. 2019. Vol. 150, Pg. 054505.

Perspective: Crossing the Widom line in no man’s land: Experiments, simulations, and the location of

Nicholas J. Hestand and J. L. Skinner. Perspective: Crossing the Widom line in no man’s land: Experiments, simulations, and the location of. J. Chem. Phys.. 2018. Vol. 149, Pg. 140901.

Communication: Diffusion constant in supercooled water as the Widom line is crossed in no man’s land

Yicun Ni, Nicholas J. Hestand, and J. L. Skinner. Communication: Diffusion constant in supercooled water as the Widom line is crossed in no man’s land. J. Chem. Phys.. 2018. Vol. 148, Pg. 191102.