Search PubMed⌕ Search

Biomedical subjects

Yu-Jane Sheng

Publications and source records attributed to Yu-Jane Sheng.

20 records · Page 2Linked to original sources

Electrostatic interaction between two aqueous microdroplets in an apolar medium.

In an apolar medium, the electrostatic interactions between two aqueous microdroplets coated with surfactants are investigated by the mean-field theory. The electric field and ion distributions within the aqueous core are described by the Poisson-Boltzmann equation. Under Debye-Hückel approximation, the interaction energy is obtained analytically. Due to the polarization effect, the Coulomb interaction is altered by the induced multipoles in the aqueous droplet. The interaction, however, is insensitive to the ion concentration. In comparison with the Coulomb interaction, the repulsion for a pair of similarly charged droplets is reduced and the attraction for a pair of oppositely charged droplets is enhanced. More importantly, the interaction between a neutral and charged droplets is attractive. The effect of interdroplet interactions on the collision frequency is also discussed.

Journal Article↗

Polymer knot confined in a tube: statics and relaxation dynamics.

The statics and relaxation dynamics of a polymer knot confined in a cylindrical tube of diameter D are investigated by Monte Carlo simulations. The prime knots with crossings varying from 3(1) to 7(1) are considered. The equilibrium radius of gyration along the axial direction is scaled as R(parallel) approximately R(F)(R(F)/D)(m), where R(F) is the Flory radius of a knotted polymer. Our simulation results suggest that m=0.95, which is different from the value for a linear chain, m=2/3. The relaxation behavior of the knotted polymer is studied after the tubular constraint is removed. The relaxation time can be scaled as tau(parallel) approximately NR(1+1/m)(F)R(1-1/m)(parallel), which is confirmed by simulations. The effect of topological complexity on both properties is manifested through the Flory radius.

Journal Article↗