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Surface modification of pH-responsive poly(2-(tert-butylamino)ethyl methacrylate) brushes grafted on mesoporous silica nanoparticles

Poly(2‑(tert-butylamino)ethyl methacrylate) brushes (PTBAEMA) are grown from mesoporous silica nanoparticles via surface-initiated atom transfer radical polymerization (SI-ATRP). Linear PTBAEMA brushes are protonated and highly swollen at low pH; brushes are collapsed at pH higher than 7.7 due to de...

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Autores principales: Alswieleh, Abdullah M., Alshahrani, Mufleh M., Alzahrani, Khalid E., Alghamdi, Hamdan S., Niazy, Abdurahman A, Alsilme, Abdulilah S, Beagan, Abeer M., Alsheheri, Bayan M., Alghamdi, Abdulaziz A., Almeataq, Mohammed S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Taylor & Francis 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6913628/
https://www.ncbi.nlm.nih.gov/pubmed/31853240
http://dx.doi.org/10.1080/15685551.2019.1699727
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author Alswieleh, Abdullah M.
Alshahrani, Mufleh M.
Alzahrani, Khalid E.
Alghamdi, Hamdan S.
Niazy, Abdurahman A
Alsilme, Abdulilah S
Beagan, Abeer M.
Alsheheri, Bayan M.
Alghamdi, Abdulaziz A.
Almeataq, Mohammed S.
author_facet Alswieleh, Abdullah M.
Alshahrani, Mufleh M.
Alzahrani, Khalid E.
Alghamdi, Hamdan S.
Niazy, Abdurahman A
Alsilme, Abdulilah S
Beagan, Abeer M.
Alsheheri, Bayan M.
Alghamdi, Abdulaziz A.
Almeataq, Mohammed S.
author_sort Alswieleh, Abdullah M.
collection PubMed
description Poly(2‑(tert-butylamino)ethyl methacrylate) brushes (PTBAEMA) are grown from mesoporous silica nanoparticles via surface-initiated atom transfer radical polymerization (SI-ATRP). Linear PTBAEMA brushes are protonated and highly swollen at low pH; brushes are collapsed at pH higher than 7.7 due to deprotonation, as determined by dynamic light scattering (DLS). Quaternization of these brushes is conducted using 2-iodoethanol in alkali media. DLS measurement of nanoparticles shows that surface-confined quaternization occurs and produces pH-responsive brushes with a hydrophobic upper surface. Variation of the 2-iodoethanol reaction time enables the mean degree of surface quaternization. The pH-responsive behaviour of quaternized PTBEAMA brushes at 1 h reaction time indicates low degrees of surface quaternization, dictated by the spatial location of 2-iodoethanol. Almost uniformly quaternized brushes prepared when the conducted for 3 h and became less swollen at low pH than brushes that conducted for 1 h. The intensity of the C − C − O component (286.5 eV) in the C1s X-ray photoelectron spectrum increased, suggesting that the reaction with iodoethanol was successful occurred.
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spelling pubmed-69136282019-12-18 Surface modification of pH-responsive poly(2-(tert-butylamino)ethyl methacrylate) brushes grafted on mesoporous silica nanoparticles Alswieleh, Abdullah M. Alshahrani, Mufleh M. Alzahrani, Khalid E. Alghamdi, Hamdan S. Niazy, Abdurahman A Alsilme, Abdulilah S Beagan, Abeer M. Alsheheri, Bayan M. Alghamdi, Abdulaziz A. Almeataq, Mohammed S. Des Monomers Polym Article Poly(2‑(tert-butylamino)ethyl methacrylate) brushes (PTBAEMA) are grown from mesoporous silica nanoparticles via surface-initiated atom transfer radical polymerization (SI-ATRP). Linear PTBAEMA brushes are protonated and highly swollen at low pH; brushes are collapsed at pH higher than 7.7 due to deprotonation, as determined by dynamic light scattering (DLS). Quaternization of these brushes is conducted using 2-iodoethanol in alkali media. DLS measurement of nanoparticles shows that surface-confined quaternization occurs and produces pH-responsive brushes with a hydrophobic upper surface. Variation of the 2-iodoethanol reaction time enables the mean degree of surface quaternization. The pH-responsive behaviour of quaternized PTBEAMA brushes at 1 h reaction time indicates low degrees of surface quaternization, dictated by the spatial location of 2-iodoethanol. Almost uniformly quaternized brushes prepared when the conducted for 3 h and became less swollen at low pH than brushes that conducted for 1 h. The intensity of the C − C − O component (286.5 eV) in the C1s X-ray photoelectron spectrum increased, suggesting that the reaction with iodoethanol was successful occurred. Taylor & Francis 2019-12-11 /pmc/articles/PMC6913628/ /pubmed/31853240 http://dx.doi.org/10.1080/15685551.2019.1699727 Text en © 2019 The Author(s). Published by Informa UK Limited, trading as Taylor & Francis Group. http://creativecommons.org/licenses/by/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Article
Alswieleh, Abdullah M.
Alshahrani, Mufleh M.
Alzahrani, Khalid E.
Alghamdi, Hamdan S.
Niazy, Abdurahman A
Alsilme, Abdulilah S
Beagan, Abeer M.
Alsheheri, Bayan M.
Alghamdi, Abdulaziz A.
Almeataq, Mohammed S.
Surface modification of pH-responsive poly(2-(tert-butylamino)ethyl methacrylate) brushes grafted on mesoporous silica nanoparticles
title Surface modification of pH-responsive poly(2-(tert-butylamino)ethyl methacrylate) brushes grafted on mesoporous silica nanoparticles
title_full Surface modification of pH-responsive poly(2-(tert-butylamino)ethyl methacrylate) brushes grafted on mesoporous silica nanoparticles
title_fullStr Surface modification of pH-responsive poly(2-(tert-butylamino)ethyl methacrylate) brushes grafted on mesoporous silica nanoparticles
title_full_unstemmed Surface modification of pH-responsive poly(2-(tert-butylamino)ethyl methacrylate) brushes grafted on mesoporous silica nanoparticles
title_short Surface modification of pH-responsive poly(2-(tert-butylamino)ethyl methacrylate) brushes grafted on mesoporous silica nanoparticles
title_sort surface modification of ph-responsive poly(2-(tert-butylamino)ethyl methacrylate) brushes grafted on mesoporous silica nanoparticles
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6913628/
https://www.ncbi.nlm.nih.gov/pubmed/31853240
http://dx.doi.org/10.1080/15685551.2019.1699727
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