Abstract
Following our previous studies on the molecular level structure of (co)oligoesters obtained via anionic homo-and co-polymerization of novel β-substituted β-lactones, prepared by the atmospheric pressure carbonylation reaction of respective epoxides, the boric acid biocatalyzed ring-opening (co)polymerization of δ-valerolactone has been studied. As a co-monomer the 6-methy-ε-caprolactone, prepared by the one-pot oxidation of respective alcohol, and ethylene glycol as polymerization initiator were used. The obtained copolymers were characterized by1H-NMR, GPC and ESI-MS, respectively in order to confirm their chemical structures and identity. Subsequently, tandem mass spectrometry (MS-MS studies) via collision-induced dissociation were utilized to char-acterize the fragmentation pattern. ESI-MS and NMR analyses confirmed the formation of random linear copolymer chains composed of different polyester repeat units. MS-MS experiments showed that fragmentation proceeds via ester bound cleavage along the (co)polyester chains. The innovative aspect of this contribution is related to the elaboration of the telechelic (co)polymers end-capped with hydroxyl end groups and well-defined molecular architectures, which could facilitate the development of new flexible macromolecular systems for potential biomedical applications.
| Original language | English |
|---|---|
| Article number | 4859 |
| Journal | Molecules |
| Volume | 26 |
| Issue number | 16 |
| DOIs | |
| Publication status | Published - 2 Aug 2021 |
Keywords
- 6-methyl-6-ε-caprolactone
- 7-methyl-2-Oxepanone
- Baeyer-villiger oxidation
- Biocatalyst
- Biodegradable polymers
- Boric acid
- Metal free catalyst
- Oxetane-2-ones (β-lactones)
- Poly (δ-valerolactone)
- Polymer MS-MS studies
ASJC Scopus subject areas
- Analytical Chemistry
- Chemistry (miscellaneous)
- Molecular Medicine
- Pharmaceutical Science
- Drug Discovery
- Physical and Theoretical Chemistry
- Organic Chemistry
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