September 2016

Journal

Chain Conformation and Dynamics in Spin-Assisted Weak Polyelectrolyte Multilayers

By:
Zhuk, Aliaksandr ; Selin, Viktar ; Zhuk, Iryna; Belov, Benjamin; Ankner, John F; Sukhishvili, Svetlana
Journal Name:
Langmuir
Page Number:
3889-3896
Volume:
31
Issue Number:
13
Publication Date:
September 2016
View DOI Listing:
https://doi.org/10.1021/acs.langmuir.5b00401

Abstract

We report on the effect of the deposition technique on film layering, stability, and chain mobility in weak polyelectrolyte layer-by-layer (LbL) films. Ellipsometry and neutron reflectometry (NR) showed that shear forces arising during spin-assisted assembly lead to smaller amounts of adsorbed polyelectrolytes within LbL films, result in a higher degree of internal film order, and dramatically improve stability of assemblies in salt solutions as compared to dip-assisted LbL assemblies. The underlying flattening of polyelectrolyte chains in spin-assisted LbL films was also revealed as an increase in ionization degree of the assembled weak polyelectrolytes. As demonstrated by fluorescence recovery after photobleaching (FRAP), strong binding between spin-deposited polyelectrolytes results in a significant slowdown of chain diffusion in salt solutions as compared to dip-deposited films. Moreover, salt-induced chain intermixing in the direction perpendicular to the substrate is largely inhibited in spin-deposited films, resulting in only subdiffusional (<2 angstrom) chain displacements even after 200 h exposure to 1 M NaCl solutions. This persistence of polyelectrolyte layering has important ramifications for multistage drug delivery and optical applications of LbL assemblies.


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