Controlling the Spatial Distribution of Solubilized Compounds within Copolymer Micelles

Publication date

2019-02-27

Authors

Ianiro, Alessandro
González García, ÁlvaroISNI 0000000506008174
Wijker, Stefan
Patterson, Joseph P.
Esteves, A. Catarina C.
Tuinier, RemcoISNI 0000000120546121

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Article
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Abstract

The solubilization of lyophobic compounds in block copolymer micelles has been extensively investigated but remains only partially understood. There is a need to understand the fundamental parameters that determine the spatial distribution of the solubilized compounds within the micelles. Controlling this feature is a key aspect in the design of drug delivery systems with tailored release properties. Using Scheutjens-Fleer self-consistent field (SF-SCF) computations, we found that solubilization is regulated by a complex interplay between enthalpic and entropic contributions and that the spatial distribution can be controlled by the concentration and solubility of the guest compound in the dispersion medium. Upon solubilization, a characteristic change in size and mass of the micelles is predicted. This can be used as a fingerprint to indirectly assess the spatial distribution. Based on these findings, we developed two experimental protocols to control and assess the spatial distribution of lyophobic compounds within block copolymer micelles.

Keywords

General Materials Science, Condensed Matter Physics, Surfaces and Interfaces, Spectroscopy, Electrochemistry

Citation

Ianiro, A, González García, Á, Wijker, S, Patterson, J P, Esteves, A C C & Tuinier, R 2019, 'Controlling the Spatial Distribution of Solubilized Compounds within Copolymer Micelles', Langmuir, vol. 35, no. 13, pp. 4776-4786. https://doi.org/10.1021/acs.langmuir.9b00180