Cargando…

One-Pot Polymerization of Dopamine as an Additive to Enhance Permeability and Antifouling Properties of Polyethersulfone Membrane

This paper reports the fabrication of polyethersulfone membranes via in situ hydrogen peroxide-assisted polymerization of dopamine. The dopamine and hydrogen peroxide were introduced into the dope solution where the polymerization occurred, resulting in a single-step additive formation during membra...

Descripción completa

Detalles Bibliográficos
Autores principales: Mulyati, Sri, Muchtar, Syawaliah, Arahman, Nasrul, Meirisa, Friska, Syamsuddin, Yanna, Zuhra, Zuhra, Rosnelly, Cut Meurah, Shamsuddin, Norazanita, Mat Nawi, Normi Izati, Wirzal, Mohd Dzul Hakim, Bilad, Muhammad Roil, Takagi, Ryosuke, Matsuyama, Hideto
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7464200/
https://www.ncbi.nlm.nih.gov/pubmed/32806565
http://dx.doi.org/10.3390/polym12081807
_version_ 1783577309258711040
author Mulyati, Sri
Muchtar, Syawaliah
Arahman, Nasrul
Meirisa, Friska
Syamsuddin, Yanna
Zuhra, Zuhra
Rosnelly, Cut Meurah
Shamsuddin, Norazanita
Mat Nawi, Normi Izati
Wirzal, Mohd Dzul Hakim
Bilad, Muhammad Roil
Takagi, Ryosuke
Matsuyama, Hideto
author_facet Mulyati, Sri
Muchtar, Syawaliah
Arahman, Nasrul
Meirisa, Friska
Syamsuddin, Yanna
Zuhra, Zuhra
Rosnelly, Cut Meurah
Shamsuddin, Norazanita
Mat Nawi, Normi Izati
Wirzal, Mohd Dzul Hakim
Bilad, Muhammad Roil
Takagi, Ryosuke
Matsuyama, Hideto
author_sort Mulyati, Sri
collection PubMed
description This paper reports the fabrication of polyethersulfone membranes via in situ hydrogen peroxide-assisted polymerization of dopamine. The dopamine and hydrogen peroxide were introduced into the dope solution where the polymerization occurred, resulting in a single-step additive formation during membrane fabrication. The effectivity of modification was evaluated through characterizations of the resulting membranes in terms of chemical functional groups, surface morphology, porosity, contact angle, mechanical strength and filtration of humic acid solution. The results confirm that the polydopamine was formed during the dope solution mixing through peroxide-assisted polymerization as proven by the appearance of peaks associated OH and NH groups in the resulting membranes. The presence of polydopamine residual in the membrane matric enhances the pore properties in terms of size and porosity (by a factor of 10), and by lowering the hydrophilicity (from 69° to 53°) which leads to enhanced filtration flux of up to 217 L/m(2) h. The presence of the residual polydopamine also enhances membrane surface hydrophilicity which improve the antifouling properties as shown from the flux recovery ratio of > 80%.
format Online
Article
Text
id pubmed-7464200
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-74642002020-09-04 One-Pot Polymerization of Dopamine as an Additive to Enhance Permeability and Antifouling Properties of Polyethersulfone Membrane Mulyati, Sri Muchtar, Syawaliah Arahman, Nasrul Meirisa, Friska Syamsuddin, Yanna Zuhra, Zuhra Rosnelly, Cut Meurah Shamsuddin, Norazanita Mat Nawi, Normi Izati Wirzal, Mohd Dzul Hakim Bilad, Muhammad Roil Takagi, Ryosuke Matsuyama, Hideto Polymers (Basel) Article This paper reports the fabrication of polyethersulfone membranes via in situ hydrogen peroxide-assisted polymerization of dopamine. The dopamine and hydrogen peroxide were introduced into the dope solution where the polymerization occurred, resulting in a single-step additive formation during membrane fabrication. The effectivity of modification was evaluated through characterizations of the resulting membranes in terms of chemical functional groups, surface morphology, porosity, contact angle, mechanical strength and filtration of humic acid solution. The results confirm that the polydopamine was formed during the dope solution mixing through peroxide-assisted polymerization as proven by the appearance of peaks associated OH and NH groups in the resulting membranes. The presence of polydopamine residual in the membrane matric enhances the pore properties in terms of size and porosity (by a factor of 10), and by lowering the hydrophilicity (from 69° to 53°) which leads to enhanced filtration flux of up to 217 L/m(2) h. The presence of the residual polydopamine also enhances membrane surface hydrophilicity which improve the antifouling properties as shown from the flux recovery ratio of > 80%. MDPI 2020-08-12 /pmc/articles/PMC7464200/ /pubmed/32806565 http://dx.doi.org/10.3390/polym12081807 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
Mulyati, Sri
Muchtar, Syawaliah
Arahman, Nasrul
Meirisa, Friska
Syamsuddin, Yanna
Zuhra, Zuhra
Rosnelly, Cut Meurah
Shamsuddin, Norazanita
Mat Nawi, Normi Izati
Wirzal, Mohd Dzul Hakim
Bilad, Muhammad Roil
Takagi, Ryosuke
Matsuyama, Hideto
One-Pot Polymerization of Dopamine as an Additive to Enhance Permeability and Antifouling Properties of Polyethersulfone Membrane
title One-Pot Polymerization of Dopamine as an Additive to Enhance Permeability and Antifouling Properties of Polyethersulfone Membrane
title_full One-Pot Polymerization of Dopamine as an Additive to Enhance Permeability and Antifouling Properties of Polyethersulfone Membrane
title_fullStr One-Pot Polymerization of Dopamine as an Additive to Enhance Permeability and Antifouling Properties of Polyethersulfone Membrane
title_full_unstemmed One-Pot Polymerization of Dopamine as an Additive to Enhance Permeability and Antifouling Properties of Polyethersulfone Membrane
title_short One-Pot Polymerization of Dopamine as an Additive to Enhance Permeability and Antifouling Properties of Polyethersulfone Membrane
title_sort one-pot polymerization of dopamine as an additive to enhance permeability and antifouling properties of polyethersulfone membrane
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7464200/
https://www.ncbi.nlm.nih.gov/pubmed/32806565
http://dx.doi.org/10.3390/polym12081807
work_keys_str_mv AT mulyatisri onepotpolymerizationofdopamineasanadditivetoenhancepermeabilityandantifoulingpropertiesofpolyethersulfonemembrane
AT muchtarsyawaliah onepotpolymerizationofdopamineasanadditivetoenhancepermeabilityandantifoulingpropertiesofpolyethersulfonemembrane
AT arahmannasrul onepotpolymerizationofdopamineasanadditivetoenhancepermeabilityandantifoulingpropertiesofpolyethersulfonemembrane
AT meirisafriska onepotpolymerizationofdopamineasanadditivetoenhancepermeabilityandantifoulingpropertiesofpolyethersulfonemembrane
AT syamsuddinyanna onepotpolymerizationofdopamineasanadditivetoenhancepermeabilityandantifoulingpropertiesofpolyethersulfonemembrane
AT zuhrazuhra onepotpolymerizationofdopamineasanadditivetoenhancepermeabilityandantifoulingpropertiesofpolyethersulfonemembrane
AT rosnellycutmeurah onepotpolymerizationofdopamineasanadditivetoenhancepermeabilityandantifoulingpropertiesofpolyethersulfonemembrane
AT shamsuddinnorazanita onepotpolymerizationofdopamineasanadditivetoenhancepermeabilityandantifoulingpropertiesofpolyethersulfonemembrane
AT matnawinormiizati onepotpolymerizationofdopamineasanadditivetoenhancepermeabilityandantifoulingpropertiesofpolyethersulfonemembrane
AT wirzalmohddzulhakim onepotpolymerizationofdopamineasanadditivetoenhancepermeabilityandantifoulingpropertiesofpolyethersulfonemembrane
AT biladmuhammadroil onepotpolymerizationofdopamineasanadditivetoenhancepermeabilityandantifoulingpropertiesofpolyethersulfonemembrane
AT takagiryosuke onepotpolymerizationofdopamineasanadditivetoenhancepermeabilityandantifoulingpropertiesofpolyethersulfonemembrane
AT matsuyamahideto onepotpolymerizationofdopamineasanadditivetoenhancepermeabilityandantifoulingpropertiesofpolyethersulfonemembrane