Home / Publications / Synthesis and ring-opening polymerization of glycidyl ethylene phosphate with a formation of linear and branched polyphosphates

Synthesis and ring-opening polymerization of glycidyl ethylene phosphate with a formation of linear and branched polyphosphates

Ilya Eduardovich Nifant'ev
Andrei Vladimirovich Shlyakhtin 1
Andrei Vladimirovich Shlyakhtin
Vladimir Vladimirovich Bagrov 1
Vladimir Vladimirovich Bagrov
Maxim Alekseevich Kosarev 1
Maxim Alekseevich Kosarev
Alexander Nikolaevich Tavtorkin
Pavel Vasil'evich Ivchenko 1, 2
Pavel Vasil'evich Ivchenko
Published 2018-03-01
CommunicationVolume 28, Issue 2, 155-157
11
Share
Cite this
GOST
 | 
Cite this
GOST Copy
Nifant'ev I. E. et al. Synthesis and ring-opening polymerization of glycidyl ethylene phosphate with a formation of linear and branched polyphosphates // Mendeleev Communications. 2018. Vol. 28. No. 2. pp. 155-157.
GOST all authors (up to 50) Copy
Nifant'ev I. E., Shlyakhtin A. V., Bagrov V. V., Komarov P. D., Kosarev M. A., Tavtorkin A. N., Minyaev M. E., Roznyatovsky V. A., Ivchenko P. V. Synthesis and ring-opening polymerization of glycidyl ethylene phosphate with a formation of linear and branched polyphosphates // Mendeleev Communications. 2018. Vol. 28. No. 2. pp. 155-157.
RIS
 | 
Cite this
RIS Copy
TY - JOUR
DO - 10.1016/j.mencom.2018.03.015
UR - https://mendcomm.colab.ws/publications/10.1016/j.mencom.2018.03.015
TI - Synthesis and ring-opening polymerization of glycidyl ethylene phosphate with a formation of linear and branched polyphosphates
T2 - Mendeleev Communications
AU - Nifant'ev, Ilya Eduardovich
AU - Shlyakhtin, Andrei Vladimirovich
AU - Bagrov, Vladimir Vladimirovich
AU - Komarov, Pavel Denisovich
AU - Kosarev, Maxim Alekseevich
AU - Tavtorkin, Alexander Nikolaevich
AU - Minyaev, Mikhail Evgenievich
AU - Roznyatovsky, Vitaly A
AU - Ivchenko, Pavel Vasil'evich
PY - 2018
DA - 2018/03/01
PB - Mendeleev Communications
SP - 155-157
IS - 2
VL - 28
ER -
BibTex
 | 
Cite this
BibTex (up to 50 authors) Copy
@article{2018_Nifant'ev,
author = {Ilya Eduardovich Nifant'ev and Andrei Vladimirovich Shlyakhtin and Vladimir Vladimirovich Bagrov and Pavel Denisovich Komarov and Maxim Alekseevich Kosarev and Alexander Nikolaevich Tavtorkin and Mikhail Evgenievich Minyaev and Vitaly A Roznyatovsky and Pavel Vasil'evich Ivchenko},
title = {Synthesis and ring-opening polymerization of glycidyl ethylene phosphate with a formation of linear and branched polyphosphates},
journal = {Mendeleev Communications},
year = {2018},
volume = {28},
publisher = {Mendeleev Communications},
month = {Mar},
url = {https://mendcomm.colab.ws/publications/10.1016/j.mencom.2018.03.015},
number = {2},
pages = {155--157},
doi = {10.1016/j.mencom.2018.03.015}
}
MLA
Cite this
MLA Copy
Nifant'ev, Ilya Eduardovich, et al. “Synthesis and ring-opening polymerization of glycidyl ethylene phosphate with a formation of linear and branched polyphosphates.” Mendeleev Communications, vol. 28, no. 2, Mar. 2018, pp. 155-157. https://mendcomm.colab.ws/publications/10.1016/j.mencom.2018.03.015.

Abstract

Newly obtained cyclic monomer, glycidyl ethylene phosphate, readily forms branched or linear polymers via ring-opening polymerization catalyzed by 1,5,7-triazabicyclo[4.4.0]dec-5-ene or by [(BHT)Mg(OBn)(THF)]2, respectively. The polymers obtained are promising for biomedical applications.

References

2.
Polyphosphoesters
Wang J., Yuan Y.-., Du J.-.
2012
3.
S. Penczek, J. Pretula and K. Kaluzynski, Biomacromolecules, 206, 547.
4.
Polymers with Esters of Phosphoric Acid Units: From Synthesis, Models of Biopolymers to PolymerInorganic Hybrids
5.
10.1016/j.mencom.2018.03.015_bib0025
Wang
MacromBiosci, 2009
6.
Poly(phosphoester)s: A New Platform for Degradable Polymers
Steinbach T., Wurm F.R.
Angewandte Chemie - International Edition, 2015
9.
Facile Synthesis of Clickable, Water-Soluble, and Degradable Polyphosphoesters
Zhang S., Li A., Zou J., Lin L.Y., Wooley K.L.
ACS Macro Letters, 2012
10.
Polyphosphoesters in drug and gene delivery
Zhao Z., Wang J., Mao H., Leong K.W.
Advanced Drug Delivery Reviews, 2003
12.
Water-Soluble Poly(phosphonate)s via Living Ring-Opening Polymerization
Steinbach T., Ritz S., Wurm F.R.
ACS Macro Letters, 2014
15.
Tailor-Made Dual pH-Sensitive Polymer–Doxorubicin Nanoparticles for Efficient Anticancer Drug Delivery
17.
Protein adsorption is required for stealth effect of poly(ethylene glycol)- and poly(phosphoester)-coated nanocarriers
Schöttler S., Becker G., Winzen S., Steinbach T., Mohr K., Landfester K., Mailänder V., Wurm F.R.
Nature Nanotechnology, 2016
19.
Metal-Free Strategies for the Synthesis of Functional and Well-Defined Polyphosphoesters
Clément B., Grignard B., Koole L., Jérôme C., Lecomte P.
Macromolecules, 2012
22.
Novel Thermoresponsive Polymers Having Biodegradable Phosphoester Backbones
Iwasaki Y., Wachiralarpphaithoon C., Akiyoshi K.
Macromolecules, 2007
24.
Controlled ring-opening polymerisation of cyclic phosphates, phosphonates and phosphoramidates catalysed by heteroleptic BHT-alkoxy magnesium complexes
Nifant'ev I.E., Shlyakhtin A.V., Bagrov V.V., Komarov P.D., Kosarev M.A., Tavtorkin A.N., Minyaev M.E., Roznyatovsky V.A., Ivchenko P.V.
Polymer Chemistry, 2017
26.
Bone-specific poly(ethylene sodium phosphate)-bearing biodegradable nanoparticles
28.
Joining Two Natural Motifs: Catechol-Containing Poly(phosphoester)s
Becker G., Ackermann L., Schechtel E., Klapper M., Tremel W., Wurm F.R.
Biomacromolecules, 2017
29.
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
30.
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