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Chemical Reviews|February 13, 2019
Biological Membrane Organization and Cellular SignalingXiaolin Cheng, Jeremy C SmithInterdisciplinary Sciences, Computational Life Sciences|December 20, 2011
The solvation structures of cellulose microfibrils in ionic liquidsBarmak Mostofian, Jeremy C Smith, Xiaolin ChengJournal of Chemical Theory and Computation|November 26, 2015
A Solvent-Free Coarse Grain Model for Crystalline and Amorphous Cellulose FibrilsGoundla Srinivas, Xiaolin Cheng, Jeremy C SmithJournal of Physics. Condensed Matter : an Institute of Physics Journal|January 17, 2017
The tilt-dependent potential of mean force of a pair of DNA oligomers from all-atom molecular dynamics simulationsRuggero Cortini, Xiaolin Cheng, Jeremy C SmithThe Journal of Physical Chemistry. B|February 26, 2014
Coarse-grain model for natural cellulose fibrils in explicit waterGoundla Srinivas, Xiaolin Cheng, Jeremy C SmithThe Journal of Physical Chemistry. B|September 3, 2014
Replica-exchange molecular dynamics simulations of cellulose solvated in water and in the ionic liquid 1-butyl-3-methylimidazolium chlorideBarmak Mostofian, Xiaolin Cheng, Jeremy C SmithChemistry and Physics of Lipids|August 2, 2015
Lateral organization, bilayer asymmetry, and inter-leaflet coupling of biological membranesJonathan D Nickels, Jeremy C Smith, Xiaolin ChengPhysical Chemistry Chemical Physics : PCCP|May 21, 2020
Carotenoids promote lateral packing and condensation of lipid membranesBarmak Mostofian, Quentin R Johnson, Jeremy C Smith, et al.Biomacromolecules|September 4, 2012
REACH coarse-grained simulation of a cellulose fiberDennis C Glass, Kei Moritsugu, Xiaolin Cheng, et al.Physical Review Letters|September 26, 2012
Surface hydration amplifies single-well protein atom diffusion propagating into the macromolecular coreLiang Hong, Xiaolin Cheng, Dennis C Glass, et al.Pageof 48