AI Article Synopsis

  • The study investigates how the length of the hydrophobic PLLA block in diblock and triblock copolymers affects the structure of micelles in aqueous solutions.
  • It was found that the size of the crystalline PLLA core remains largely consistent, while micelles form clusters with decreasing distance between their cores as the PLLA block length increases.
  • The conformation of the PEO chains changes due to overcrowding, resulting in more stretched chains for copolymers with shorter PLLA blocks, leading to a proposed model of micelle and cluster structure.

Article Abstract

The effect of the hydrophobic block length in diblock (PLLA - b-PEO, x = 64, 166, 418) and triblock (PLLA - b-PEO- b-PLLA , y = 30, 52, 120) copolymers of l-lactic acid and ethylene oxide on the structure of micelles prepared by dialysis was studied by wide- and small-angle X-ray scattering in dilute aqueous solution, dynamic light scattering, transmission electron microscopy, atomic force microscopy, and force spectroscopy. It was found that the size of the crystalline PLLA core is weakly dependent on the PLLA block length. In addition to individual micelles, a number of their micellar clusters were detected with characteristic distance between adjacent micelle cores decreasing with an increase in PLLA block length. This effect was explained by the change in the conformation of PEO chains forming the micellar corona because of their overcrowding. Force spectroscopy experiments also reveal a more stretched conformation of the PEO chains for the block copolymers with a shorter PLLA block. A model describing the structure of the individual micelles and their clusters was proposed.

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Source
http://dx.doi.org/10.1021/acs.langmuir.8b03379DOI Listing

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