197
Views
20
CrossRef citations to date
0
Altmetric
Articles

Preparation of a PVDF hollow fiber blend membrane via thermally induced phase separation (TIPS) method using new synthesized zwitterionic copolymer

, , , , &
Pages 2911-2919 | Received 10 Dec 2013, Accepted 09 Mar 2014, Published online: 22 Apr 2014

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (1)

Yuan-Hui Tang, Ya-Kai Lin, Bo Zhou & Xiao-Lin Wang. (2016) PVDF membranes prepared via thermally induced (liquid–liquid) phase separation and their application in municipal sewage and industry wastewater for water recycling. Desalination and Water Treatment 57:47, pages 22258-22276.
Read now

Articles from other publishers (19)

Shang Xiang, Pengfei Zhang, Saeid Rajabzadeh, Ralph Rolly Gonzales, Zhan Li, Yongxuan Shi, Siyu Zhou, Mengyang Hu, Kecheng Guan & Hideto Matsuyama. (2023) Development of porous polyketone membrane via liquid–liquid thermally induced phase separation. Journal of Membrane Science 677, pages 121639.
Crossref
Wenzhong Ma, Zhuang Zhou, Norafiqah Ismail, Elena Tocci, Alberto Figoli, Mohamed Khayet, Takeshi Matsuura, Zhaoliang Cui & Naser Tavajohi. (2023) Membrane formation by thermally induced phase separation: Materials, involved parameters, modeling, current efforts and future directions. Journal of Membrane Science 669, pages 121303.
Crossref
Hana Nur Aini, Irish Maggay, Yung Chang & Antoine Venault. (2022) A Green Stable Antifouling PEGylated PVDF Membrane Prepared by Vapor-Induced Phase Separation. Membranes 12:12, pages 1277.
Crossref
Gheffar Kh. Kara, Elaheh esmaeili, Mousa Kehtari, Rayhaneh Ghafourian & Azadeh Tadjarodi. (2022) A comparative investigation of the synergistic correlation (mechanical-hydrophobicity/hydrophilicity vs. structural behaviors) of a series of surface-metalized polyacrylonitrile fibers by silver nanoparticles (AgPAN): An in-situ surface metallization protocol . Journal of Industrial Textiles 52, pages 152808372211404.
Crossref
Yuanhui Tang, Yakai Lin, Wenzhong Ma & Xiaolin Wang. (2021) A review on microporous polyvinylidene fluoride membranes fabricated via thermally induced phase separation for MF/UF application. Journal of Membrane Science 639, pages 119759.
Crossref
Azadeh Nazif, Hamed Karkhanechi, Ehsan Saljoughi, Seyed Mahmoud Mousavi & Hideto Matsuyama. (2021) Effective Parameters on Fabrication and Modification of Braid Hollow Fiber Membranes: A Review. Membranes 11:11, pages 884.
Crossref
Rozita M. Moattari, Toraj Mohammadi, Saied Rajabzadeh, Hadi Dabiryan & Hideto Matsuyama. (2021) Reinforced hollow fiber membranes: A comprehensive review. Journal of the Taiwan Institute of Chemical Engineers 122, pages 284-310.
Crossref
Bin Yang, Qinting Chen, Mengya Ding, Yang Pan, Peng Zhang, Shuqing Wang, Jiasheng Qian, Jibin Miao, Ru Xia, Peng Chen, You Shi & Youlei Tu. (2021) Facile way of dynamically tailoring microporous structures in polyvinylidene fluoride films prepared by thermally induced phase separation. Journal of Polymer Science 59:5, pages 412-427.
Crossref
Chuanjie Fang, Pengfei Zhang, Saeid Rajabzadeh, Noriaki Kato & Hideto Matsuyama. (2021) One step surfactant entrapment onto PVDF hollow fiber membrane surface by the TIPS process using a triple-layer orifice spinneret. Colloids and Surfaces A: Physicochemical and Engineering Aspects 611, pages 125885.
Crossref
Hideto Matsuyama, Hamed Karkhanechi & Saeid Rajabzadeh. 2021. Hollow Fiber Membranes. Hollow Fiber Membranes 57 83 .
Pedram Vousoughi, Mohammad Reza Moghbeli & Sousa Javan Nikkhah. (2019) Molecular Dynamics (MD) Simulation of Zwitterion-Functionalized PMMA with Hydrophilic and Antifouling Surface Characteristics. Macromolecular Research 27:12, pages 1200-1209.
Crossref
Papatya Kaner, Alexander V. Dudchenko, Meagan S. Mauter & Ayse Asatekin. (2019) Zwitterionic copolymer additive architecture affects membrane performance: fouling resistance and surface rearrangement in saline solutions. Journal of Materials Chemistry A 7:9, pages 4829-4846.
Crossref
Jian Hou, Jaehan Yun, Sungil Jeon, Kun Yong Chung & Hongsik Byun. (2018) Preparation and Fundamental Characterization of EVOH Hollow Fiber Membranes via Thermally Induced Phase Separation (TIPS). Membrane Journal 28:6, pages 395-405.
Crossref
Hao-Tung Lin, Antoine Venault, Han Qing Huang, Kueir-Rarn Lee & Yung Chang. (2018) Introducing a PEGylated diblock copolymer into PVDF hollow-fibers for reducing their fouling propensity. Journal of the Taiwan Institute of Chemical Engineers 87, pages 252-263.
Crossref
Antoine Venault, Chen-Hua Hsu, Kazuhiko Ishihara & Yung Chang. (2018) Zwitterionic bi-continuous membranes from a phosphobetaine copolymer/poly(vinylidene fluoride) blend via VIPS for biofouling mitigation. Journal of Membrane Science 550, pages 377-388.
Crossref
Sungil Jeon, Hamed Karkhanechi, Li-Feng Fang, Liang Cheng, Takahiro Ono, Ryota Nakamura & Hideto Matsuyama. (2018) Novel preparation and fundamental characterization of polyamide 6 self-supporting hollow fiber membranes via thermally induced phase separation (TIPS). Journal of Membrane Science 546, pages 1-14.
Crossref
Papatya Kaner, Emil Rubakh, Do Hyun Kim & Ayse Asatekin. (2017) Zwitterion-containing polymer additives for fouling resistant ultrafiltration membranes. Journal of Membrane Science 533, pages 141-159.
Crossref
Hideto Matsuyama, Saeid Rajabzadeh, Hamed Karkhanechi & Sungil Jeon. 2017. Comprehensive Membrane Science and Engineering. Comprehensive Membrane Science and Engineering 137 189 .
Bo Wang, Jing Ji & Kang Li. (2016) Crystal nuclei templated nanostructured membranes prepared by solvent crystallization and polymer migration. Nature Communications 7:1.
Crossref

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.