Yao Xin, Ph.D.
Affiliations: | 2007 | Georgia State University, Atlanta, GA, United States |
Area:
BiochemistryGoogle:
"Yao Xin"Mean distance: (not calculated yet)
Parents
Sign in to add mentorStuart Anthony Allison | grad student | 2007 | Georgia State | |
(Electrokinetic modeling of free solution electrophoresis.) |
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Publications
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Allison S, Pei H, Haynes M, et al. (2008) Translational diffusion of macromolecules and nanoparticles modeled as non-overlapping bead arrays in an effective medium. The Journal of Physical Chemistry. B. 112: 5858-66 |
Pei H, Xin Y, Allison SA. (2008) Using electrophoretic mobility and bead modeling to characterize the charge and secondary structure of peptides. Journal of Separation Science. 31: 555-64 |
Allison SA, Xin Y, Pei H. (2008) Corrigendum to “Electrophoresis of spheres with uniform zeta potential in a gel modeled as an effective medium” [J. Colloid Interface Sci. 313 (2007) 328–337] Journal of Colloid and Interface Science. 325: 296 |
Allison SA, Pei H, Xin Y. (2007) Modeling the free solution and gel electrophoresis of biopolymers: the bead array-effective medium model. Biopolymers. 87: 102-14 |
Allison SA, Xin Y, Pei H. (2007) Electrophoresis of spheres with uniform zeta potential in a gel modeled as an effective medium. Journal of Colloid and Interface Science. 313: 328-37 |
Xin Y, Hess R, Ho N, et al. (2006) Modeling the electrophoresis of peptides and proteins: improvements in the "bead method" to include ion relaxation and "finite size effects". The Journal of Physical Chemistry. B. 110: 25033-44 |
Allison S, Xin Y. (2006) Electrokinetic transport of a spherical gel-layer model particle: inclusion of charge regulation and application to polystyrene sulfonate. Journal of Colloid and Interface Science. 299: 977-88 |
Xin Y, Mitchell H, Cameron H, et al. (2006) Modeling the electrophoretic mobility and diffusion of weakly charged peptides. The Journal of Physical Chemistry. B. 110: 1038-45 |
Allison SA, Xin Y. (2005) Electrokinetic transport of rigid macroions in the thin double layer limit: a boundary element approach. Journal of Colloid and Interface Science. 288: 616-28 |