The average magnetic anisotropy of polystyrene in polymersomes self-assembled from poly(ethylene glycol)-<i>b</i>-polystyrene.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 38117161.
- Also identified by DOI 10.1039/d3sm01333b and PMC identifier 10806999.
- Licence recorded as CC BY.
- The licence permits redistribution, so the abstract is shown in full and the full text is available from the publisher.
Abstract
Using the diamagnetic anisotropy of polymers for the characterization of polymers and polymer aggregates is a relatively new approach in the field of soft-matter and polymer research. So far, a good and thorough quantitative description of these diamagnetic properties has been lacking. Using a simple equation that links the magnetic properties of an average polymer repeating unit to those of the polymer vesicle of any shape, we measured, using magnetic birefringence, the average diamagnetic anisotropy of a polystyrene (PS) repeating unit, Δ<i>χ</i><sup>PS</sup>, inside a poly(ethylene glycol)-polystyrene (PEG-PS) polymersome membrane as a function of the PS-length and as a function of the preparation method. All obtained values of Δ<i>χ</i><sup>PS</sup> have a negative sign which results in polymers tending to align perpendicular to an applied magnetic field. Combined, the same order of magnitude of Δ<i>χ</i><sup>PS</sup> (10<sup>-12</sup> m<sup>3</sup> mol<sup>-1</sup>) for all polymersome shapes proves that the individual polymers are organized similarly regardless of the PS length and polymersome shape. Furthermore, the value found is only a fraction (∼1%) of what it can maximally be due to the random coiling of the polymers. We, therefore, predict that further ordering of the polymers within the membrane could lead to similar responses at much lower magnetic fields, possibly obtainable with permanent magnets, which would be highly advantageous for practical applications.