Cargando…

Self-Assembly of Linear Amphiphilic Pentablock Terpolymer PAA(x)-PS(48)-PEO(46)-PS(48)-PAA(x)in Dilute Aqueous Solution

A series of linear amphiphilic pentablock terpolymer PAA(x)-b-PS(48)-b-PEO(46)-b-PS(48)-b-PAA(x) (A(x)S(48)O(46)S(48)A(x)) with various lengths x of the PAA block (x = 15, 40, 60, and 90) were synthesized via a two-step atom transfer radical polymerization (ATRP) using Br-poly(ethylene oxide)-Br (Br...

Descripción completa

Detalles Bibliográficos
Autores principales: Gao, Jia, An, Kun, Lv, Chao, Nie, Jingjing, Xu, Junting, Du, Binyang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7598608/
https://www.ncbi.nlm.nih.gov/pubmed/32987761
http://dx.doi.org/10.3390/polym12102183
_version_ 1783602660038934528
author Gao, Jia
An, Kun
Lv, Chao
Nie, Jingjing
Xu, Junting
Du, Binyang
author_facet Gao, Jia
An, Kun
Lv, Chao
Nie, Jingjing
Xu, Junting
Du, Binyang
author_sort Gao, Jia
collection PubMed
description A series of linear amphiphilic pentablock terpolymer PAA(x)-b-PS(48)-b-PEO(46)-b-PS(48)-b-PAA(x) (A(x)S(48)O(46)S(48)A(x)) with various lengths x of the PAA block (x = 15, 40, 60, and 90) were synthesized via a two-step atom transfer radical polymerization (ATRP) using Br-poly(ethylene oxide)-Br (Br-PEO(46)-Br) as the macroinitiator, styrene (St) as the first monomer, and tert-butyl acrylate (tBA) as the second monomer, followed with the hydrolysis of PtBA blocks. The A(x)S(48)O(46)S(48)A(x) pentablock terpolymers formed micelles in dilute aqueous solution, of which the morphologies were dependent on the length x of the PAA block. Cryogenic transmission electron microscopy (cryo-TEM), dynamic light scattering (DLS), and zeta potential measurement were employed to investigate the morphologies, chain structures, size, and size distribution of the obtained micelles. The morphology of A(x)S(48)O(46)S(48)A(x) micelles changed from spherical vesicles with ordered porous membranes to long double nanotubes, then to long nanotubes with inner modulated nanotubes or short nanotubes, and finally, to spherical micelles or large compound vesicles with spherical micelles inside when x increased from 15 to 90. The hydrophobic PS blocks formed the walls of vesicles and nanotubes as well as the core of spherical micelles. The hydrophilic PEO and PAA block chains were located on the surfaces of vesicle membranes, nanotubes, and spherical micelles. The PAA block chains were partially ionized, leading to the negative zeta potential of A(x)S(48)O(46)S(48)A(x) micelles in dilute aqueous solutions.
format Online
Article
Text
id pubmed-7598608
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-75986082020-10-31 Self-Assembly of Linear Amphiphilic Pentablock Terpolymer PAA(x)-PS(48)-PEO(46)-PS(48)-PAA(x)in Dilute Aqueous Solution Gao, Jia An, Kun Lv, Chao Nie, Jingjing Xu, Junting Du, Binyang Polymers (Basel) Article A series of linear amphiphilic pentablock terpolymer PAA(x)-b-PS(48)-b-PEO(46)-b-PS(48)-b-PAA(x) (A(x)S(48)O(46)S(48)A(x)) with various lengths x of the PAA block (x = 15, 40, 60, and 90) were synthesized via a two-step atom transfer radical polymerization (ATRP) using Br-poly(ethylene oxide)-Br (Br-PEO(46)-Br) as the macroinitiator, styrene (St) as the first monomer, and tert-butyl acrylate (tBA) as the second monomer, followed with the hydrolysis of PtBA blocks. The A(x)S(48)O(46)S(48)A(x) pentablock terpolymers formed micelles in dilute aqueous solution, of which the morphologies were dependent on the length x of the PAA block. Cryogenic transmission electron microscopy (cryo-TEM), dynamic light scattering (DLS), and zeta potential measurement were employed to investigate the morphologies, chain structures, size, and size distribution of the obtained micelles. The morphology of A(x)S(48)O(46)S(48)A(x) micelles changed from spherical vesicles with ordered porous membranes to long double nanotubes, then to long nanotubes with inner modulated nanotubes or short nanotubes, and finally, to spherical micelles or large compound vesicles with spherical micelles inside when x increased from 15 to 90. The hydrophobic PS blocks formed the walls of vesicles and nanotubes as well as the core of spherical micelles. The hydrophilic PEO and PAA block chains were located on the surfaces of vesicle membranes, nanotubes, and spherical micelles. The PAA block chains were partially ionized, leading to the negative zeta potential of A(x)S(48)O(46)S(48)A(x) micelles in dilute aqueous solutions. MDPI 2020-09-24 /pmc/articles/PMC7598608/ /pubmed/32987761 http://dx.doi.org/10.3390/polym12102183 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Gao, Jia
An, Kun
Lv, Chao
Nie, Jingjing
Xu, Junting
Du, Binyang
Self-Assembly of Linear Amphiphilic Pentablock Terpolymer PAA(x)-PS(48)-PEO(46)-PS(48)-PAA(x)in Dilute Aqueous Solution
title Self-Assembly of Linear Amphiphilic Pentablock Terpolymer PAA(x)-PS(48)-PEO(46)-PS(48)-PAA(x)in Dilute Aqueous Solution
title_full Self-Assembly of Linear Amphiphilic Pentablock Terpolymer PAA(x)-PS(48)-PEO(46)-PS(48)-PAA(x)in Dilute Aqueous Solution
title_fullStr Self-Assembly of Linear Amphiphilic Pentablock Terpolymer PAA(x)-PS(48)-PEO(46)-PS(48)-PAA(x)in Dilute Aqueous Solution
title_full_unstemmed Self-Assembly of Linear Amphiphilic Pentablock Terpolymer PAA(x)-PS(48)-PEO(46)-PS(48)-PAA(x)in Dilute Aqueous Solution
title_short Self-Assembly of Linear Amphiphilic Pentablock Terpolymer PAA(x)-PS(48)-PEO(46)-PS(48)-PAA(x)in Dilute Aqueous Solution
title_sort self-assembly of linear amphiphilic pentablock terpolymer paa(x)-ps(48)-peo(46)-ps(48)-paa(x)in dilute aqueous solution
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7598608/
https://www.ncbi.nlm.nih.gov/pubmed/32987761
http://dx.doi.org/10.3390/polym12102183
work_keys_str_mv AT gaojia selfassemblyoflinearamphiphilicpentablockterpolymerpaaxps48peo46ps48paaxindiluteaqueoussolution
AT ankun selfassemblyoflinearamphiphilicpentablockterpolymerpaaxps48peo46ps48paaxindiluteaqueoussolution
AT lvchao selfassemblyoflinearamphiphilicpentablockterpolymerpaaxps48peo46ps48paaxindiluteaqueoussolution
AT niejingjing selfassemblyoflinearamphiphilicpentablockterpolymerpaaxps48peo46ps48paaxindiluteaqueoussolution
AT xujunting selfassemblyoflinearamphiphilicpentablockterpolymerpaaxps48peo46ps48paaxindiluteaqueoussolution
AT dubinyang selfassemblyoflinearamphiphilicpentablockterpolymerpaaxps48peo46ps48paaxindiluteaqueoussolution