
FOLLOWUS
a.State Key Laboratory for Modification of Chemical Fibers and Polymer Materials, College of Materials Science and Engineering, Donghua University, Shanghai 201620, China
b.Innovation Center for Textile Science and Technology, Donghua University, Shanghai 201620, China
mabomou@dhu.edu.cn (B.M.M.)
yhe@dhu.edu.cn (Y.H.)
Published:01 August 2024,
Published Online:11 July 2024,
Received:29 April 2024,
Revised:27 May 2024,
Accepted:05 June 2024
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Liu, T.; Niu, F. F.; Cheng, K.; Xia, Y. M.; Ma, B. M.; Wang, X. L.; Yu, J. Y.; He, Y. Sequence-controlled synthesis of alternating poly(ester amide)s using water as control agent in one-pot. Chinese J. Polym. Sci. 2024, 42, 1015–1020
Tao Liu, Fang-Fang Niu, Kan Cheng, et al. Sequence-Controlled Synthesis of Alternating Poly(ester amide)s using Water as Control Agent in One-Pot. [J]. Chinese Journal of Polymer Science 42(8):1015-1020(2024)
Liu, T.; Niu, F. F.; Cheng, K.; Xia, Y. M.; Ma, B. M.; Wang, X. L.; Yu, J. Y.; He, Y. Sequence-controlled synthesis of alternating poly(ester amide)s using water as control agent in one-pot. Chinese J. Polym. Sci. 2024, 42, 1015–1020 DOI: 10.1007/s10118-024-3185-6.
Tao Liu, Fang-Fang Niu, Kan Cheng, et al. Sequence-Controlled Synthesis of Alternating Poly(ester amide)s using Water as Control Agent in One-Pot. [J]. Chinese Journal of Polymer Science 42(8):1015-1020(2024) DOI: 10.1007/s10118-024-3185-6.
In this work
the one-pot preparation of quasi-alternating PEAs was achieved by introducing water to inhibit the esterification reaction during the amidation reaction stage and subsequently promoting the esterification reaction by removing water under vacuum. The synthesized PEAs are comparable to the PEAs synthesized by traditional method.
Poly(ester amide)s (PEAs) attract much attention as a new kind of biodegradable polymers. However
the synthesis of PEAs with sequence-regulated chain structures is still complicated due to the multistep polymerization
high monomer purity
as well as the usage of organic solvents
which greatly inhibits its development and applications. Herein
a one-pot strategy without solvent was developed to synthesize the alternating PEA from
α
ω
-amino alcohol and dicarboxylic acid by sequential polycondensation
where water was used as the controlling agent for amidation and esterification. Specifically
the amidation and esterification were controlled to proceed in turn by adding or removing water
realizing the one-pot preparation of alternating PEAs. The resultant PEA is characterized by
1
H- and
13
C-NMR
and its chain structure is confirmed to be highly quasi-alternating similar to alternating PEAs prepared by classical methods The evaluations from DSC and DMA demonstrate that the properties of quasi-alternating PEA (
T
m
=102 °C
Δ
H
m
=30 J·g
−1
) are far superior to those of random PEA (
T
m
=72 °C
Δ
H
m
<
1 J·g
−1
).
Biodegradable macromoleculesPolymer architecturesSequence-controlled synthesisOne-pot polymerization
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