Pore Stability and Dynamics in Polymer Membranes

Loading...
Thumbnail Image

Embargo Date

Degree type

Discipline

Subject

Funder

Grant number

License

Copyright date

Distributor

Related resources

Author

Bermudez, Harry
Aranda-Espinoza, Helim

Contributor

Abstract

Vesicles self-assembled from amphiphilic diblock copolymers exhibit a wide diversity of behavior upon poration, due to competitions between edge, surface and bending energies, while viscous dissipation mechanisms determine the time scales. The copolymers are essentially chemically identical, only varying in chain length (related to the membrane thickness d). For small d, we find large unstable pores and the resulting membrane fragments reassemble into vesicles within minutes. For large d, however, submicron pores form and are extremely long-lived. The results show that pore behavior depends strongly on d, suggesting that the relevant energies depend on d and pore size r in a more complexmanner than what is generally assumed. Further control over these systems would make them useful for numerous applications.

Advisor

Date Range for Data Collection (Start Date)

Date Range for Data Collection (End Date)

Digital Object Identifier

Series name and number

Publication date

2003-11-15

Journal title

Volume number

Issue number

Publisher

Publisher DOI

Journal Issues

Comments

Reprinted from Europhysics Letters, Volume 64, Issue 4, November 2003, pages 550-556. Publisher URL: http://dx.doi.org/10.1209/epl/i2003-00264-2

Recommended citation

Collection