Versatile Preparation of Branched Polylactides by Low-Temperature, Organocatalytic Ring-Opening Polymerization in N-Methylpyrrolidone and Their Surface Degradation Behavior
Giulia Scoponi
1, 2
,
Nora Francini
3
,
Veronica Paradiso
4
,
Roberto Donno
3
,
Arianna Gennari
3
,
Richard d’Arcy
3
,
Ilker S. Bayer
1
,
Nicola Tirelli
3, 5
Publication type: Journal Article
Publication date: 2021-10-07
scimago Q1
wos Q1
SJR: 1.352
CiteScore: 9.0
Impact factor: 5.2
ISSN: 00249297, 15205835
PubMed ID:
34720189
Materials Chemistry
Organic Chemistry
Inorganic Chemistry
Polymers and Plastics
Abstract
We describe how the organocatalytic, 1,8-diazabicyclo[5.4.0]undec-7-ene (DBU)-based lactide ring-opening polymerization can be effectively performed in a very polar solvent, N-methylpyrrolidone (NMP). Due to a low ceiling temperature, this "living" mechanism has been unreported to date, but we here demonstrate that through a combination of low temperature and repeated monomer additions (starve-fed process), this mechanism enables the generation of a plethora of multifunctional homo- and (stereo)block-poly(lactide)s (PLAs) with exquisite control of the molecular weight dispersity (typically Đ < 1.1) and topology (from linear through 4-, 6-, or 8-armed stars and up to ∼140 armed combs). They are scarcely obtainable or inaccessible through more classical synthetic methods due to the poor solubility of multifunctional initiators (polyols) in most organic solvents and monomer melts. In these precisely designed structures, branching significantly altered the nature of the materials' hydrolytic degradation, allowing them to acquire a pronounced surface character (as opposed to the bulk degradation of linear polymers). Finally, we have assessed the amenability of this method to in situ block copolymerization by using the tacticity of PLLA blocks in PLLA-b-PDLLA versus PDLLA-b-PLLA (L-LA polymerized before or after DL-LA) as a sensitive method to detect (stereochemical) defects.
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11
Total citations:
11
Citations from 2025:
2
(18.18%)
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Scoponi G. et al. Versatile Preparation of Branched Polylactides by Low-Temperature, Organocatalytic Ring-Opening Polymerization in N-Methylpyrrolidone and Their Surface Degradation Behavior // Macromolecules. 2021. Vol. 54. No. 20. pp. 9482-9495.
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Scoponi G., Francini N., Paradiso V., Donno R., Gennari A., d’Arcy R., Capacchione C., Bayer I. S., Tirelli N. Versatile Preparation of Branched Polylactides by Low-Temperature, Organocatalytic Ring-Opening Polymerization in N-Methylpyrrolidone and Their Surface Degradation Behavior // Macromolecules. 2021. Vol. 54. No. 20. pp. 9482-9495.
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RIS
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TY - JOUR
DO - 10.1021/acs.macromol.1c01503
UR - https://doi.org/10.1021/acs.macromol.1c01503
TI - Versatile Preparation of Branched Polylactides by Low-Temperature, Organocatalytic Ring-Opening Polymerization in N-Methylpyrrolidone and Their Surface Degradation Behavior
T2 - Macromolecules
AU - Scoponi, Giulia
AU - Francini, Nora
AU - Paradiso, Veronica
AU - Donno, Roberto
AU - Gennari, Arianna
AU - d’Arcy, Richard
AU - Capacchione, Carmine
AU - Bayer, Ilker S.
AU - Tirelli, Nicola
PY - 2021
DA - 2021/10/07
PB - American Chemical Society (ACS)
SP - 9482-9495
IS - 20
VL - 54
PMID - 34720189
SN - 0024-9297
SN - 1520-5835
ER -
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BibTex (up to 50 authors)
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@article{2021_Scoponi,
author = {Giulia Scoponi and Nora Francini and Veronica Paradiso and Roberto Donno and Arianna Gennari and Richard d’Arcy and Carmine Capacchione and Ilker S. Bayer and Nicola Tirelli},
title = {Versatile Preparation of Branched Polylactides by Low-Temperature, Organocatalytic Ring-Opening Polymerization in N-Methylpyrrolidone and Their Surface Degradation Behavior},
journal = {Macromolecules},
year = {2021},
volume = {54},
publisher = {American Chemical Society (ACS)},
month = {oct},
url = {https://doi.org/10.1021/acs.macromol.1c01503},
number = {20},
pages = {9482--9495},
doi = {10.1021/acs.macromol.1c01503}
}
Cite this
MLA
Copy
Scoponi, Giulia, et al. “Versatile Preparation of Branched Polylactides by Low-Temperature, Organocatalytic Ring-Opening Polymerization in N-Methylpyrrolidone and Their Surface Degradation Behavior.” Macromolecules, vol. 54, no. 20, Oct. 2021, pp. 9482-9495. https://doi.org/10.1021/acs.macromol.1c01503.