Mark L. Schlossman

Affiliations: 
Physics University of Illinois at Chicago, Chicago, IL, United States 
Area:
General Biophysics, Physical Chemistry
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"Mark Schlossman"
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Publications

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Katakura S, Amano KI, Sakka T, et al. (2020) Evolution and Reversible Polarity of Multilayering at the Ionic Liquid/Water Interface. The Journal of Physical Chemistry. B
Zhang P, Villanueva V, Kalkowski J, et al. (2019) Molecular interactions of phospholipid monolayers with a model phospholipase. Soft Matter
Liang Z, Bu W, Schweighofer KJ, et al. (2018) Nanoscale view of assisted ion transport across the liquid-liquid interface. Proceedings of the National Academy of Sciences of the United States of America
Tietjen GT, Baylon JL, Kerr D, et al. (2017) Coupling X-Ray Reflectivity and In Silico Binding to Yield Dynamics of Membrane Recognition by Tim1. Biophysical Journal. 113: 1505-1519
Sadati M, Ramezani-Dakhel H, Bu W, et al. (2017) Molecular Structure of Canonical Liquid Crystal Interfaces. Journal of the American Chemical Society
Kerr D, Gong Z, Tietjen G, et al. (2017) Membrane Bound Structures of Peripheral Membrane Binding Proteins TIM3 and TIM1 Produced by Molecular Dynamics Informed Analysis of X-Ray Scattering Experiments Biophysical Journal. 112: 391a
Simms K, Bu W, Meron M, et al. (2016) 2016 Liquid Surface X-ray Scattering School: Data Analysis Synchrotron Radiation News. 29: 34-35
Kerr D, Tietjen GT, Sang Chu SK, et al. (2016) Structural Analysis of Tim Proteins as Model Protein-Membrane System using X-ray Scattering Biophysical Journal. 110: 254a
Bera MK, Luo G, Schlossman ML, et al. (2015) Erbium(III) Coordination at the Surface of an Aqueous Electrolyte. The Journal of Physical Chemistry. B. 119: 8734-45
Yu H, Yzeiri I, Hou B, et al. (2015) Electric Field Effect on Phospholipid Monolayers at an Aqueous-Organic Liquid-Liquid Interface. The Journal of Physical Chemistry. B. 119: 9319-34
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