Home / Publications / Poly(ɛ-caprolactone-co-ω-pentadecalactone) electrospun fibers

Poly(ɛ-caprolactone-co-ω-pentadecalactone) electrospun fibers

Ilya Eduardovich Nifant'ev
Maxim Alekseevich Kosarev 1
Maxim Alekseevich Kosarev
Andrei Vladimirovich Shlyakhtin 1
Andrei Vladimirovich Shlyakhtin
Alexander Nikolaevich Tavtorkin
Pavel Vasil'evich Ivchenko 1, 2
Pavel Vasil'evich Ivchenko
Published 2019-12-30
CommunicationVolume 30, Issue 1, 46-48
5
Share
Cite this
GOST
 | 
Cite this
GOST Copy
Nifant'ev I. E. et al. Poly(ɛ-caprolactone-co-ω-pentadecalactone) electrospun fibers // Mendeleev Communications. 2019. Vol. 30. No. 1. pp. 46-48.
GOST all authors (up to 50) Copy
Nifant'ev I. E., Kosarev M. A., Shlyakhtin A. V., Tavtorkin A. N., Minyaev M. E., Ivchenko P. V. Poly(ɛ-caprolactone-co-ω-pentadecalactone) electrospun fibers // Mendeleev Communications. 2019. Vol. 30. No. 1. pp. 46-48.
RIS
 | 
Cite this
RIS Copy
TY - JOUR
DO - 10.1016/j.mencom.2020.01.015
UR - https://mendcomm.colab.ws/publications/10.1016/j.mencom.2020.01.015
TI - Poly(ɛ-caprolactone-co-ω-pentadecalactone) electrospun fibers
T2 - Mendeleev Communications
AU - Nifant'ev, Ilya Eduardovich
AU - Kosarev, Maxim Alekseevich
AU - Shlyakhtin, Andrei Vladimirovich
AU - Tavtorkin, Alexander Nikolaevich
AU - Minyaev, Mikhail Evgenievich
AU - Ivchenko, Pavel Vasil'evich
PY - 2019
DA - 2019/12/30
PB - Mendeleev Communications
SP - 46-48
IS - 1
VL - 30
ER -
BibTex
 | 
Cite this
BibTex (up to 50 authors) Copy
@article{2019_Nifant'ev,
author = {Ilya Eduardovich Nifant'ev and Maxim Alekseevich Kosarev and Andrei Vladimirovich Shlyakhtin and Alexander Nikolaevich Tavtorkin and Mikhail Evgenievich Minyaev and Pavel Vasil'evich Ivchenko},
title = {Poly(ɛ-caprolactone-co-ω-pentadecalactone) electrospun fibers},
journal = {Mendeleev Communications},
year = {2019},
volume = {30},
publisher = {Mendeleev Communications},
month = {Dec},
url = {https://mendcomm.colab.ws/publications/10.1016/j.mencom.2020.01.015},
number = {1},
pages = {46--48},
doi = {10.1016/j.mencom.2020.01.015}
}
MLA
Cite this
MLA Copy
Nifant'ev, Ilya Eduardovich, et al. “Poly(ɛ-caprolactone-co-ω-pentadecalactone) electrospun fibers.” Mendeleev Communications, vol. 30, no. 1, Dec. 2019, pp. 46-48. https://mendcomm.colab.ws/publications/10.1016/j.mencom.2020.01.015.

Keywords

biodegradable polymers
copolymerization
electrospinning
ɛ-caprolactone
fiber
ring-opening polymerization
ω-pentadecalactone

Abstract

Electrospun fibers with appropriate morphology have been prepared from ω-pentadecalactone/ɛ-caprolactone random copolymers when polymer solutions in 1,2-dichloroethane/hexafluoroisopropanol media were used for molding.

References

1.
Recent Developments in Ring-Opening Polymerization of Lactones
Lecomte P., Jérôme C.
Advances in Polymer Science, 2011
2.
Aliphatic Polyester Block Polymers: Renewable, Degradable, and Sustainable
Hillmyer M.A., Tolman W.B.
Accounts of Chemical Research, 2014
4.
Biosynthetic Polymers as Functional Materials
Carlini A.S., Adamiak L., Gianneschi N.C.
Macromolecules, 2016
5.
Electrospun Scaffolds of a Polyhydroxyalkanoate Consisting of ω-Hydroxylpentadecanoate Repeat Units: Fabrication and In Vitro Biocompatibility Studies
Focarete M.L., Gualandi C., Scandola M., Govoni M., Giordano E., Foroni L., Valente S., Pasquinelli G., Gao W., Gross R.A.
Journal of Biomaterials Science, Polymer Edition, 2010
6.
Increasing the solubility range of polyesters by tuning their microstructure with comonomers
Delgove M.A., Luchies J., Wauters I., Deroover G.G., De Wildeman S.M., Bernaerts K.V.
Polymer Chemistry, 2017
7.
10.1016/j.mencom.2020.01.015_bib0035
McGinty
Food Chem. Toxicol., 2011
8.
Polymers from Functional Macrolactones as Potential Biomaterials: Enzymatic Ring Opening Polymerization, Biodegradation, and Biocompatibility
van der Meulen I., de Geus M., Antheunis H., Deumens R., Joosten E.A., Koning C.E., Heise A.
Biomacromolecules, 2008
9.
Performance polymers from renewable monomers: high molecular weight poly(pentadecalactone) for fiber applications
de Geus M., van der Meulen I., Goderis B., van Hecke K., Dorschu M., van der Werff H., Koning C.E., Heise A.
Polymer Chemistry, 2010
10.
Toward Polyethylene–Polyester Block and Graft Copolymers with Tunable Polarity
Rutkowski S., Zych A., Przybysz M., Bouyahyi M., Sowinski P., Koevoets R., Haponiuk J., Graf R., Hansen M.R., Jasinska-Walc L., Duchateau R.
Macromolecules, 2016
13.
Polyethylene-like macrolactone-based polyesters: Rheological, thermal and barrier properties
Sorrentino A., Gorrasi G., Bugatti V., Fuoco T., Pappalardo D.
Materials Today Communications, 2018
14.
Polymers from macrolactones: From pheromones to functional materials
Wilson J.A., Ates Z., Pflughaupt R.L., Dove A.P., Heise A.
Progress in Polymer Science, 2019
15.
Ring-opening polymerization of ω-pentadecalactone catalyzed by phosphazene superbases
Ladelta V., Bilalis P., Gnanou Y., Hadjichristidis N.
Polymer Chemistry, 2017
17.
Monomeric and dimeric magnesium mono-BHT complexes as effective ROP catalysts
Nifant'ev I.E., Shlyakhtin A.V., Tavtorkin A.N., Ivchenko P.V., Borisov R.S., Churakov A.V.
Catalysis Communications, 2016
18.
‘Immortal’ ring-opening polymerization of ω-pentadecalactone by Mg(BHT)2(THF)2
Wilson J.A., Hopkins S.A., Wright P.M., Dove A.P.
Polymer Chemistry, 2014
19.
Ring opening polymerization of macrolactones: high conversions and activities using an yttrium catalyst
Myers D., Witt T., Cyriac A., Bown M., Mecking S., Williams C.K.
Polymer Chemistry, 2017
20.
Dual Catalysis for Selective Ring-Opening Polymerization of Lactones: Evolution toward Simplicity
Naumann S., Scholten P.B., Wilson J.A., Dove A.P.
Journal of the American Chemical Society, 2015
21.
Ring‐opening polymerization of (Macro)lactones by highly active mononuclear salen–aluminum complexes bearing cyclicβ‐ketoiminato ligand
23.
Enzymatic ring opening polymerization of ω-pentadecalactone using supercritical carbon dioxide
Polloni A.E., Veneral J.G., Rebelatto E.A., de Oliveira D., Oliveira J.V., Araújo P.H., Sayer C.
Journal of Supercritical Fluids, 2017
24.
Enzymatic ring opening polymerization of ω-Pentadecalactone in different solvents in a variable-volume view reactor
Polloni A.E., Rebelatto E.A., Veneral J.G., de Oliveira D., Oliveira J.V., Araújo P.H., Sayer C.
Journal of Polymer Science, Part A: Polymer Chemistry, 2017
28.
Homo‐ and random copolymerizations of ω‐pentadecalactone with ε‐caprolactone using isothiourea‐based dual catalysis
Bai J., Wang X., Wang J., Zhang L.
Journal of Polymer Science, Part A: Polymer Chemistry, 2019
35.
Poly(ε-caprolactone) and Poly(ω-pentadecalactone)-Based Networks with Two-Way Shape-Memory Effect through [2+2] Cycloaddition Reactions
36.
10.1016/j.mencom.2020.01.015_bib0180
Ziemba
ACS Biomater. Sci. Eng., 2018
37.
Mono-BHT heteroleptic magnesium complexes: Synthesis, molecular structure and catalytic behavior in the ring-opening polymerization of cyclic esters
Nifant'ev I.E., Shlyakhtin A.V., Bagrov V.V., Minyaev M.E., Churakov A.V., Karchevsky S.G., Birin K.P., Ivchenko P.V.
Dalton Transactions, 2017
38.
P. V. Ivchenko, A.V. Shlyakhtin and I. E. Nifant’ev, Mendeleev Commun.,