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Nanoscale|January 28, 2014
Promote potential applications of nanoparticles as respiratory drug carrier: insights from molecular dynamics simulationsXubo Lin, Tingting Bai, Yi Y Zuo, et al.Biomaterials Science|February 28, 2018
Tuning protein assembly pathways through superfast amyloid-like aggregationChen Li, Lu Xu, Yi Y Zuo, et al.Biophysical Journal|December 30, 2021
Biophysical properties of tear film lipid layer II. Polymorphism of FAHFAXiaojie Xu, Christopher Kang, Rui Sun, et al.Langmuir : the ACS Journal of Surfaces and Colloids|March 23, 2018
Melting of the Dipalmitoylphosphatidylcholine MonolayerLu Xu, Gordon Bosiljevac, Kyle Yu, et al.Investigative Ophthalmology & Visual Science|July 6, 2026
A Controlled-Area Droplet Evaporimeter Reveals Surface Pressure-Dependent Evaporation Resistance of the Tear Film Lipid LayerYiyang Guo, Tammy Dang, Guangle Li, et al.Langmuir : the ACS Journal of Surfaces and Colloids|November 3, 2004
Transformation diagrams for the collapse of a phospholipid monolayerSandra Rugonyi, Ethan C Smith, Stephen B HallColloids and Surfaces. A, Physicochemical and Engineering Aspects|November 28, 2012
Aligning pitch for measurements of the shape of captive bubblesHamed Khoojinian, Jim P Goodarzi, Stephen B HallBiochimica Et Biophysica Acta|October 17, 2003
Non-cooperative effects of lung surfactant proteins on early adsorption to an air/water interfaceVincent Schram, Walter R Anyan, Stephen B HallLangmuir : the ACS Journal of Surfaces and Colloids|July 27, 2005
Kinetics for the collapse of trilayer liquid-crystalline disks from a monolayer at an air-water interfaceSandra Rugonyi, Ethan C Smith, Stephen B HallRespiratory Physiology & Neurobiology|July 18, 2008
The biophysical function of pulmonary surfactantSandra Rugonyi, Samares C Biswas, Stephen B HallPageof 14