Polyion Complex Nanomaterials from Block Polyelectrolyte Micelles and Linear Polyelectrolytes of Opposite Charge. 2. Dynamic Properties
Тип публикации: Journal Article
Дата публикации: 2008-06-06
scimago Q1
wos Q3
БС2
SJR: 0.742
CiteScore: 5.3
Impact factor: 2.9
ISSN: 15206106, 15205207, 10895647
PubMed ID:
18533694
Materials Chemistry
Surfaces, Coatings and Films
Physical and Theoretical Chemistry
Краткое описание
The present study investigates the relationship between the aggregation state and dynamic properties of block ionomer complexes (BICs) based on amphiphilic ionic block copolymers. The polyion coupling of 4'-(aminomethyl)fluorescein (AMF)-labeled poly(sodium methacrylate) (PMANa) or polystyrene- block-poly(sodium carboxylates) with poly(N-ethyl-4-vinylpyridinium bromide), PEVP was studied at an excess of carboxylate groups [PEVP]/[COO(-)] TOTAL = 0.3 and detected by fluorescence quenching. The polyion interchange reactions included migration of PEVP between the following: (1) two linear polyanion chains, (2) linear polyanion chain and anionic polyion shell micelle, or (3) two anionic polyion shell micelles. Additionally, the interchange of AMF-labeled PMANa with unlabeled PMANa in the shell of polystyrene- block-PEVP micelles was studied. The interchange reactions were carried out at [PEVP]/[COO(-)] TOTAL = 0.15 and detected by fluorescence quenching (direct reaction) or ignition (reverse reaction). The rates of these reactions were compared using half-conversion times and, when possible, second-order reaction kinetic constants. The dependences of the rates on the ionic strength and polyion length observed for BICs were similar to those previously reported for regular interpolyelectrolyte complexes (IPECs) of linear polyions. However, the interchange reactions involving polyion shell micelles were much slower than those reactions observed in IPECs. The coupling reactions involving polyion shell micelles were also slower compared with the coupling of linear polyions. The observed phenomena were attributed to the aggregation state of polyion shell micelles and discussed using the collision model for polyion interchange reactions previously proposed for IPECs.
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Chelushkin P. S. et al. Polyion Complex Nanomaterials from Block Polyelectrolyte Micelles and Linear Polyelectrolytes of Opposite Charge. 2. Dynamic Properties // Journal of Physical Chemistry B. 2008. Vol. 112. No. 26. pp. 7732-7738.
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Chelushkin P. S., Lysenko E. A., Bronich T., Eisenberg A., Kabanov V. A., Kabanov A. Polyion Complex Nanomaterials from Block Polyelectrolyte Micelles and Linear Polyelectrolytes of Opposite Charge. 2. Dynamic Properties // Journal of Physical Chemistry B. 2008. Vol. 112. No. 26. pp. 7732-7738.
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TY - JOUR
DO - 10.1021/jp8012877
UR - https://doi.org/10.1021/jp8012877
TI - Polyion Complex Nanomaterials from Block Polyelectrolyte Micelles and Linear Polyelectrolytes of Opposite Charge. 2. Dynamic Properties
T2 - Journal of Physical Chemistry B
AU - Chelushkin, Pavel S
AU - Lysenko, Evgeny A.
AU - Bronich, Tatiana
AU - Eisenberg, Adi
AU - Kabanov, Victor A.
AU - Kabanov, A.A.
PY - 2008
DA - 2008/06/06
PB - American Chemical Society (ACS)
SP - 7732-7738
IS - 26
VL - 112
PMID - 18533694
SN - 1520-6106
SN - 1520-5207
SN - 1089-5647
ER -
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@article{2008_Chelushkin,
author = {Pavel S Chelushkin and Evgeny A. Lysenko and Tatiana Bronich and Adi Eisenberg and Victor A. Kabanov and A.A. Kabanov},
title = {Polyion Complex Nanomaterials from Block Polyelectrolyte Micelles and Linear Polyelectrolytes of Opposite Charge. 2. Dynamic Properties},
journal = {Journal of Physical Chemistry B},
year = {2008},
volume = {112},
publisher = {American Chemical Society (ACS)},
month = {jun},
url = {https://doi.org/10.1021/jp8012877},
number = {26},
pages = {7732--7738},
doi = {10.1021/jp8012877}
}
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Chelushkin, Pavel S., et al. “Polyion Complex Nanomaterials from Block Polyelectrolyte Micelles and Linear Polyelectrolytes of Opposite Charge. 2. Dynamic Properties.” Journal of Physical Chemistry B, vol. 112, no. 26, Jun. 2008, pp. 7732-7738. https://doi.org/10.1021/jp8012877.