Deakin University
Browse

Nanofibrillar micelles and entrapped vesicles from biodegradable block copolymer/polyelectrolyte complexes in aqueous media

journal contribution
posted on 2013-01-01, 00:00 authored by Nisa Salim, Nishar Hameed, T Hanley, L Waddington, P Hartley, Qipeng Guo
Here we report a viable route to fibrillar micelles and entrapped vesicles in aqueous solutions. Nanofibrillar micelles and entrapped vesicles were prepared from complexes of a biodegradable block copolymer poly(ethylene oxide)-block-poly(lactide) (PEO-b-PLA) and a polyelectrolyte poly(acrylic acid) (PAA) in aqueous media and directly visualized using cryogenic transmission electron microscopy (cryo-TEM). The self-assembly and the morphological changes in the complexes were induced by the addition of PAA/water solution into the PEO-b-PLA in tetrahydrofuran followed by dialysis against water. A variety of morphologies including spherical wormlike and fibrillar micelles, and both unilamellar and entrapped vesicles, were observed, depending on the composition, complementary binding sites of PAA and PEO, and the change in the interfacial energy. Increasing the water content in each [AA]/[EO] ratio led to a morphological transition from spheres to vesicles, displaying both the composition- and dilution-dependent micellar-to-vesicular morphological transitions.

History

Journal

Langmuir

Volume

29

Pagination

9240 - 9248

Location

Washington, D.C.

ISSN

0743-7463

eISSN

1520-5827

Language

eng

Publication classification

C1 Refereed article in a scholarly journal

Copyright notice

2013, American Chemical Society