Fabrication of polythiourea-copper complex composite membrane and its anti-fouling property

© 2020 IOP Publishing Ltd. A Composite Flat Sheet Membrane Containing Polythiourea-Copper (PTU-Cu) Complex was fabricated through a two-step phase separation involving complexation and/or crosslinking of the polymer by copper ions (Cu2+) on the first step and non-solvent induced phase separation on...

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Main Authors: Margarito, M. T., Beltran, A. B., Promentilla, M. A., Orbecido, A., Basilia, B., Damalerio, R., Bigol, U.
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Published: Animo Repository 2020
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Online Access:https://animorepository.dlsu.edu.ph/faculty_research/3717
https://animorepository.dlsu.edu.ph/context/faculty_research/article/4719/type/native/viewcontent/012178.html
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spelling oai:animorepository.dlsu.edu.ph:faculty_research-47192021-10-06T03:42:44Z Fabrication of polythiourea-copper complex composite membrane and its anti-fouling property Margarito, M. T. Beltran, A. B. Promentilla, M. A. Orbecido, A. Basilia, B. Damalerio, R. Bigol, U. © 2020 IOP Publishing Ltd. A Composite Flat Sheet Membrane Containing Polythiourea-Copper (PTU-Cu) Complex was fabricated through a two-step phase separation involving complexation and/or crosslinking of the polymer by copper ions (Cu2+) on the first step and non-solvent induced phase separation on the second step. The surface topography of the membrane was analysed using Atomic Force Microscope (AFM) in non-contact mode. The incorporation of copper at the surface was confirmed through Scanning Electron Microscope-Energy Dispersive X-ray (SEM-EDX) mapping wherein other elements such as Sulfur (S), Carbon (C) and Oxygen (O) of the polymer were conducted. The fabricated membrane was rigid as shown by high value (about 2.15 GigaPascal) of measured Young's modulus using the Pinpoint Nanomechanical Analysis Mode of AFM. In addition, the surface charge and hydrophobicity were measured using the Electrostatic Force Microscope (EFM) and water contact angle respectively. The antifouling characteristics of the membrane was evaluated through antimicrobial membrane surface contact test wherein E. coli was used as test microorganism. Other membrane properties such as pore size distribution and pure water flux were measured using a porometer and a filtration apparatus. 2020-04-30T07:00:00Z text text/html https://animorepository.dlsu.edu.ph/faculty_research/3717 info:doi/10.1088/1757-899X/778/1/012178 https://animorepository.dlsu.edu.ph/context/faculty_research/article/4719/type/native/viewcontent/012178.html Faculty Research Work Animo Repository Thiourea Copper Fouling Chemical Engineering
institution De La Salle University
building De La Salle University Library
continent Asia
country Philippines
Philippines
content_provider De La Salle University Library
collection DLSU Institutional Repository
topic Thiourea
Copper
Fouling
Chemical Engineering
spellingShingle Thiourea
Copper
Fouling
Chemical Engineering
Margarito, M. T.
Beltran, A. B.
Promentilla, M. A.
Orbecido, A.
Basilia, B.
Damalerio, R.
Bigol, U.
Fabrication of polythiourea-copper complex composite membrane and its anti-fouling property
description © 2020 IOP Publishing Ltd. A Composite Flat Sheet Membrane Containing Polythiourea-Copper (PTU-Cu) Complex was fabricated through a two-step phase separation involving complexation and/or crosslinking of the polymer by copper ions (Cu2+) on the first step and non-solvent induced phase separation on the second step. The surface topography of the membrane was analysed using Atomic Force Microscope (AFM) in non-contact mode. The incorporation of copper at the surface was confirmed through Scanning Electron Microscope-Energy Dispersive X-ray (SEM-EDX) mapping wherein other elements such as Sulfur (S), Carbon (C) and Oxygen (O) of the polymer were conducted. The fabricated membrane was rigid as shown by high value (about 2.15 GigaPascal) of measured Young's modulus using the Pinpoint Nanomechanical Analysis Mode of AFM. In addition, the surface charge and hydrophobicity were measured using the Electrostatic Force Microscope (EFM) and water contact angle respectively. The antifouling characteristics of the membrane was evaluated through antimicrobial membrane surface contact test wherein E. coli was used as test microorganism. Other membrane properties such as pore size distribution and pure water flux were measured using a porometer and a filtration apparatus.
format text
author Margarito, M. T.
Beltran, A. B.
Promentilla, M. A.
Orbecido, A.
Basilia, B.
Damalerio, R.
Bigol, U.
author_facet Margarito, M. T.
Beltran, A. B.
Promentilla, M. A.
Orbecido, A.
Basilia, B.
Damalerio, R.
Bigol, U.
author_sort Margarito, M. T.
title Fabrication of polythiourea-copper complex composite membrane and its anti-fouling property
title_short Fabrication of polythiourea-copper complex composite membrane and its anti-fouling property
title_full Fabrication of polythiourea-copper complex composite membrane and its anti-fouling property
title_fullStr Fabrication of polythiourea-copper complex composite membrane and its anti-fouling property
title_full_unstemmed Fabrication of polythiourea-copper complex composite membrane and its anti-fouling property
title_sort fabrication of polythiourea-copper complex composite membrane and its anti-fouling property
publisher Animo Repository
publishDate 2020
url https://animorepository.dlsu.edu.ph/faculty_research/3717
https://animorepository.dlsu.edu.ph/context/faculty_research/article/4719/type/native/viewcontent/012178.html
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