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Direct grafting of tetraaniline via perfluorophenylazide photochemistry to create antifouling, low bio-adhesion surfaces

Conjugated polyaniline has shown anticorrosive, hydrophilic, antibacterial, pH-responsive, and pseudocapacitive properties making it of interest in many fields. However, in situ grafting of polyaniline without harsh chemical treatments is challenging. In this study, we report a simple, fast, and non...

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Autores principales: Lin, Cheng-Wei, Aguilar, Stephanie, Rao, Ethan, Mak, Wai H., Huang, Xinwei, He, Na, Chen, Dayong, Jun, Dukwoo, Curson, Paige A., McVerry, Brian T., Hoek, Eric M. V., Huang, Shu-Chuan, Kaner, Richard B.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Royal Society of Chemistry 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6487792/
https://www.ncbi.nlm.nih.gov/pubmed/31057772
http://dx.doi.org/10.1039/c8sc04832k
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author Lin, Cheng-Wei
Aguilar, Stephanie
Rao, Ethan
Mak, Wai H.
Huang, Xinwei
He, Na
Chen, Dayong
Jun, Dukwoo
Curson, Paige A.
McVerry, Brian T.
Hoek, Eric M. V.
Huang, Shu-Chuan
Kaner, Richard B.
author_facet Lin, Cheng-Wei
Aguilar, Stephanie
Rao, Ethan
Mak, Wai H.
Huang, Xinwei
He, Na
Chen, Dayong
Jun, Dukwoo
Curson, Paige A.
McVerry, Brian T.
Hoek, Eric M. V.
Huang, Shu-Chuan
Kaner, Richard B.
author_sort Lin, Cheng-Wei
collection PubMed
description Conjugated polyaniline has shown anticorrosive, hydrophilic, antibacterial, pH-responsive, and pseudocapacitive properties making it of interest in many fields. However, in situ grafting of polyaniline without harsh chemical treatments is challenging. In this study, we report a simple, fast, and non-destructive surface modification method for grafting tetraaniline (TANI), the smallest conjugated repeat unit of polyaniline, onto several materials via perfluorophenylazide photochemistry. The new materials are characterized by nuclear magnetic resonance (NMR) and electrospray ionization (ESI) mass spectroscopy. TANI is shown to be covalently bonded to important carbon materials including graphite, carbon nanotubes (CNTs), and reduced graphene oxide (rGO), as confirmed by transmission electron microscopy (TEM). Furthermore, large area modifications on polyethylene terephthalate (PET) films through dip-coating or spray-coating demonstrate the potential applicability in biomedical applications where high transparency, patternability, and low bio-adhesion are needed. Another important application is preventing biofouling in membranes for water purification. Here we report the first oligoaniline grafted water filtration membranes by modifying commercially available polyethersulfone (PES) ultrafiltration (UF) membranes. The modified membranes are hydrophilic as demonstrated by captive bubble experiments and exhibit extraordinarily low bovine serum albumin (BSA) and Escherichia coli adhesions. Superior membrane performance in terms of flux, BSA rejection and flux recovery after biofouling are demonstrated using a cross-flow system and dead-end cells, showing excellent fouling resistance produced by the in situ modification.
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spelling pubmed-64877922019-05-03 Direct grafting of tetraaniline via perfluorophenylazide photochemistry to create antifouling, low bio-adhesion surfaces Lin, Cheng-Wei Aguilar, Stephanie Rao, Ethan Mak, Wai H. Huang, Xinwei He, Na Chen, Dayong Jun, Dukwoo Curson, Paige A. McVerry, Brian T. Hoek, Eric M. V. Huang, Shu-Chuan Kaner, Richard B. Chem Sci Chemistry Conjugated polyaniline has shown anticorrosive, hydrophilic, antibacterial, pH-responsive, and pseudocapacitive properties making it of interest in many fields. However, in situ grafting of polyaniline without harsh chemical treatments is challenging. In this study, we report a simple, fast, and non-destructive surface modification method for grafting tetraaniline (TANI), the smallest conjugated repeat unit of polyaniline, onto several materials via perfluorophenylazide photochemistry. The new materials are characterized by nuclear magnetic resonance (NMR) and electrospray ionization (ESI) mass spectroscopy. TANI is shown to be covalently bonded to important carbon materials including graphite, carbon nanotubes (CNTs), and reduced graphene oxide (rGO), as confirmed by transmission electron microscopy (TEM). Furthermore, large area modifications on polyethylene terephthalate (PET) films through dip-coating or spray-coating demonstrate the potential applicability in biomedical applications where high transparency, patternability, and low bio-adhesion are needed. Another important application is preventing biofouling in membranes for water purification. Here we report the first oligoaniline grafted water filtration membranes by modifying commercially available polyethersulfone (PES) ultrafiltration (UF) membranes. The modified membranes are hydrophilic as demonstrated by captive bubble experiments and exhibit extraordinarily low bovine serum albumin (BSA) and Escherichia coli adhesions. Superior membrane performance in terms of flux, BSA rejection and flux recovery after biofouling are demonstrated using a cross-flow system and dead-end cells, showing excellent fouling resistance produced by the in situ modification. Royal Society of Chemistry 2019-03-13 /pmc/articles/PMC6487792/ /pubmed/31057772 http://dx.doi.org/10.1039/c8sc04832k Text en This journal is © The Royal Society of Chemistry 2019 https://creativecommons.org/licenses/by-nc/3.0/This article is freely available. This article is licensed under a Creative Commons Attribution Non Commercial 3.0 Unported Licence (CC BY-NC 3.0)
spellingShingle Chemistry
Lin, Cheng-Wei
Aguilar, Stephanie
Rao, Ethan
Mak, Wai H.
Huang, Xinwei
He, Na
Chen, Dayong
Jun, Dukwoo
Curson, Paige A.
McVerry, Brian T.
Hoek, Eric M. V.
Huang, Shu-Chuan
Kaner, Richard B.
Direct grafting of tetraaniline via perfluorophenylazide photochemistry to create antifouling, low bio-adhesion surfaces
title Direct grafting of tetraaniline via perfluorophenylazide photochemistry to create antifouling, low bio-adhesion surfaces
title_full Direct grafting of tetraaniline via perfluorophenylazide photochemistry to create antifouling, low bio-adhesion surfaces
title_fullStr Direct grafting of tetraaniline via perfluorophenylazide photochemistry to create antifouling, low bio-adhesion surfaces
title_full_unstemmed Direct grafting of tetraaniline via perfluorophenylazide photochemistry to create antifouling, low bio-adhesion surfaces
title_short Direct grafting of tetraaniline via perfluorophenylazide photochemistry to create antifouling, low bio-adhesion surfaces
title_sort direct grafting of tetraaniline via perfluorophenylazide photochemistry to create antifouling, low bio-adhesion surfaces
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6487792/
https://www.ncbi.nlm.nih.gov/pubmed/31057772
http://dx.doi.org/10.1039/c8sc04832k
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