In the production process of antibiotic drugs, a certain amount of inorganic salt needs to be added due to the needs of microbial growth environment and biological activity in the fermentation broth, so the drug desalination technology is an essential and important part of the pharmaceutical process. This work used KMnO4-catalyzed oxidative self-polymerization of dopamine hydrochloride to deposit polydopamine (PDA) onto porous polyvinylidene fluoride (PVDF) membranes, resulting in the production of PDA/PVDF composite nanofiltration membranes with high flux and separation selectivity in a fast and easy-to-use manner. The uniformly deposited polydopamine nanospheres on the surface of the PVDF membrane form a dense separation layer ≈25 µm thick with a water contact angle of 35.6°. The prepared composite membranes have high rejection to antibiotics such as tetracycline hydrochloride (TC, 90%) and ciprofloxacin (CIP, 92%), and low rejection to NaCl (9.8%) and MgCl2 (7.8), while the membrane show high flux exceeding 20 L/(m2·h·bar). Due to the hydrophilic properties of the functional layer, the membrane flux decreased by only about 12.5% during the 120 min TC solution filtration process. The high selectivity and antifouling properties of the composite membrane make it an ideal choice for antibiotic desalination.
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1 December 2025
Research Article|
November 21 2025
Bioinspired PDA/PVDF composite membrane with excellent antibiotic desalination properties
Faxiang Feng;
Faxiang Feng
Key Laboratory of Jiangxi Province for Special Optoelectronic Artificial Crystal Materials, School of Chemistry and Chemical Engineering,
Jinggangshan University
, Ji’an, PR China
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Guilin Dong;
Guilin Dong
Key Laboratory of Jiangxi Province for Special Optoelectronic Artificial Crystal Materials, School of Chemistry and Chemical Engineering,
Jinggangshan University
, Ji’an, PR China
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Jingjing Wang;
Jingjing Wang
Key Laboratory of Jiangxi Province for Special Optoelectronic Artificial Crystal Materials, School of Chemistry and Chemical Engineering,
Jinggangshan University
, Ji’an, PR China
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Zanming Zhu;
Zanming Zhu
Key Laboratory of Jiangxi Province for Special Optoelectronic Artificial Crystal Materials, School of Chemistry and Chemical Engineering,
Jinggangshan University
, Ji’an, PR China
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Xiaobing Liu;
Xiaobing Liu
Key Laboratory of Jiangxi Province for Special Optoelectronic Artificial Crystal Materials, School of Chemistry and Chemical Engineering,
Jinggangshan University
, Ji’an, PR China
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Runlin Han
Key Laboratory of Jiangxi Province for Special Optoelectronic Artificial Crystal Materials, School of Chemistry and Chemical Engineering,
Jinggangshan University
, Ji’an, PR China
Corresponding author Runlin Han (hanrunlin@163.com)
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Corresponding author Runlin Han (hanrunlin@163.com)
Declaration of conflicting interests The authors declare no conflict of interest.
Publisher: Emerald Publishing
Received:
June 12 2025
Accepted:
October 08 2025
Online ISSN: 2046-0155
Print ISSN: 2046-0147
Funding
Funding Group:
- Award Group:
- Funder(s): National Natural Science Foundation of China
- Award Id(s): 22366021,22568025,22268023
- Funder(s):
- Award Group:
- Funder(s): Jiangxi Province Double Thousand Talents Plan
- Award Id(s): jxsq2020101049
- Funder(s):
- Award Group:
- Funder(s): China Postdoctoral Science Foundation
- Award Id(s): 2021M691964
- Funder(s):
- Funding Statement(s): This research was funded by the National Natural Science Foundation of China (Nos. 22366021, 22568025, and 22268023), Jiangxi Province Double Thousand Talents Plan (No. jxsq2020101049), and China Postdoctoral Science Foundation (No. 2021M691964).
© 2025 Emerald Publishing Limited
2025
Emerald Publishing Limited
Licensed re-use rights only
Emerging Materials Research (2025) 14 (4): 381–388.
Article history
Received:
June 12 2025
Accepted:
October 08 2025
Citation
Feng F, Dong G, Wang J, Zhu Z, Liu X, Han R (2025), "Bioinspired PDA/PVDF composite membrane with excellent antibiotic desalination properties". Emerging Materials Research, Vol. 14 No. 4 pp. 381–388, doi: https://doi.org/10.1680/jemmr.25.00087
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