Controlled Amphiphilicity and Thermo-Responsiveness of Functional Copolymers Based on Oligo(Ethylene Glycol) Methyl Ether Methacrylates

Author:

Christopoulou Aggeliki1,Kazamiakis Charalampos1,Iatridi Zacharoula2ORCID,Bokias Georgios13ORCID

Affiliation:

1. Department of Chemistry, University of Patras, GR-26504 Patras, Greece

2. Department of Materials Science, University of Patras, GR-26504 Patras, Greece

3. Foundation for Research and Technology Hellas (FORTH), Institute of Chemical Engineering and High Temperature Chemical Processes, GR-26504 Patras, Greece

Abstract

In this work, comb homopolymers as well as comb-type copolymers of thermo-responsive oligo(ethylene glycol methyl ether methacrylate)s, OEGMAs, with various chain lengths (DEGMA, PEGMA500, and PEGMA950 containing 2, 9, or 19 repeating ethylene glycol units, respectively) were synthesized through free radical (co)polymerization. For the copolymers, either the functional hydrophobic glycidyl methacrylate (GMA) or the inert hydrophilic N,N-dimethylacrylamide (DMAM) were selected as comonomers. The self-assembly and thermo-responsive behavior of the products was investigated through Nile Red fluorescence probing, turbidimetry, and dynamic light scattering (DLS). Interestingly, it was found that all OEGMA-based homopolymers exhibit a tendency to self-organize in aqueous media, in addition to thermo-responsiveness. The critical aggregation concentration (CAC) increases with the number of repeating ethylene oxide units in the OEGMA macromonomers (CAC was found to be 0.003, 0.01, and 0.03% w/v for the homopolymers PDEGMA, PPEGMA500, and PPEGMA950, respectively). Moreover, the CAC of the copolymers in aqueous media is highly affected by the incorporation of hydrophobic GMA or hydrophilic DMAM units, leading to lower or higher values, respectively. Thus, the CAC decreases down to 0.003% w/v for the GMA-richest copolymer of PEGMA950, whereas CAC increases up to 0.01% w/v for the DMAM-richest copolymer of DEGMA. Turbidimetry and DLS studies proved that the thermo-sensitivity of the polymers is governed by several parameters such as the number of repeating ethylene glycol groups in the side chains of the OEGMAs, the molar percentage of the hydrophobic or hydrophilic comonomers, along with the addition of salts in the aqueous polymer solutions. Thus, the cloud point of the homopolymer PDEGMA was found at 23 °C and it increases to 33.5 °C for the DMAM-richest copolymer of DEGMA. Lastly, the formation of a hydrogel upon heating aqueous mixtures of the GMA-comprising copolymers with silica nanoparticles overnight is strong evidence of the functional character of these polymers.

Publisher

MDPI AG

Reference56 articles.

1. Multi-Stimuli Responsive Polymer Materials: Particles, Films, and Bulk Gels;Cao;Chem. Rec.,2016

2. Stimuli-responsive polymers and their applications;Wei;Polym. Chem.,2017

3. pH-Responsive polymers;Kocak;Polym. Chem.,2017

4. Makhlouf, A.S.H., and Abu-Thabit, N.Y. (2019). Stimuli Responsive Polymeric Nanocarriers for Drug Delivery Applications, Woodhead Publishing. Woodhead Publishing Series in Biomaterials.

5. Swelling-induced emission enhancement in substituted acetylene polymer film with large fractional free volume: Fluorescence response to organic solvent stimuli;Kwak;Macromolecules,2009

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