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Article

Preparation and Characterization of Poly(Lactic Acid)/Poly (ethylene glycol)-Poly(propyl glycol)-Poly(ethylene glycol) Blended Nanofiber Membranes for Fog Collection

by
Muhammad Omer Aijaz
1,
Seong Baek Yang
2,
Mohammad Rezaul Karim
3,*,
Mohd Hafiz Dzarfan Othman
1,* and
Ibrahim Abdullah Alnaser
3
1
Advanced Membrane Technology Research (AMTEC), Faculty of Chemical and Energy Engineering (SCEE), Universiti Teknologi Malaysia (UTM), Skudai 81310, Malaysia
2
Department of Biofibers and Biomaterials Science, Kyungpook National University, Daegu 41566, Republic of Korea
3
Department of Mechanical Engineering, College of Engineering, King Saud University, Riyadh 11421, Saudi Arabia
*
Authors to whom correspondence should be addressed.
Membranes 2023, 13(1), 32; https://doi.org/10.3390/membranes13010032
Submission received: 25 October 2022 / Revised: 15 December 2022 / Accepted: 22 December 2022 / Published: 27 December 2022

Abstract

Fog is a resource with great potential to capture fresh water from the atmosphere, regardless of the geographical and hydrological conditions. Micro-sized fog collection requires materials with hydrophilic/phobic patterns. In this study, we prepared hydrophilic poly(lactic acid) (PLA)/poly(ethylene glycol)-poly(propyl glycol)-poly(ethylene glycol) (PEG-PPG-PEG) blended nanofiber membranes with various PEG-PPG-PEG concentrations by electrospinning. Changes in the morphological and chemical properties, surface wettability, and thermal stability of the PLA/PEG-PPG-PEG composite nanofiber membranes were confirmed using field-emission scanning electron microscopy, Fourier-transform infrared spectroscopy, X-ray diffraction, contact angle testing, and thermogravimetric analysis. As the PEG-PPG-PEG content of the nanofiber membranes increased, their hydrophilicity increased. Water stability, membrane porosity, and water transport rate tests were also conducted to observe the behavior of the hydrophilic PLA nanocomposite membranes in aqueous media. Finally, we applied the PLA-based membranes as fog collectors. As the PEG-PPG-PEG content of the nanofiber membranes increased, their ability to collect fog increased by over 40% compared with that collected by a pure PLA membrane. The prepared membranes not only improve the ability of fog collectors to harvest water but also broaden the use of PLA-based membranes in multiple applications, including tissue engineering, drug delivery, scaffolds, and pharmaceuticals.
Keywords: poly(lactic acid); electrospinning; fog water harvesting; nanofibrous membrane; hydrophilicity; hydrophobicity; PEG-PPG-PEG poly(lactic acid); electrospinning; fog water harvesting; nanofibrous membrane; hydrophilicity; hydrophobicity; PEG-PPG-PEG

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MDPI and ACS Style

Aijaz, M.O.; Yang, S.B.; Karim, M.R.; Othman, M.H.D.; Alnaser, I.A. Preparation and Characterization of Poly(Lactic Acid)/Poly (ethylene glycol)-Poly(propyl glycol)-Poly(ethylene glycol) Blended Nanofiber Membranes for Fog Collection. Membranes 2023, 13, 32. https://doi.org/10.3390/membranes13010032

AMA Style

Aijaz MO, Yang SB, Karim MR, Othman MHD, Alnaser IA. Preparation and Characterization of Poly(Lactic Acid)/Poly (ethylene glycol)-Poly(propyl glycol)-Poly(ethylene glycol) Blended Nanofiber Membranes for Fog Collection. Membranes. 2023; 13(1):32. https://doi.org/10.3390/membranes13010032

Chicago/Turabian Style

Aijaz, Muhammad Omer, Seong Baek Yang, Mohammad Rezaul Karim, Mohd Hafiz Dzarfan Othman, and Ibrahim Abdullah Alnaser. 2023. "Preparation and Characterization of Poly(Lactic Acid)/Poly (ethylene glycol)-Poly(propyl glycol)-Poly(ethylene glycol) Blended Nanofiber Membranes for Fog Collection" Membranes 13, no. 1: 32. https://doi.org/10.3390/membranes13010032

APA Style

Aijaz, M. O., Yang, S. B., Karim, M. R., Othman, M. H. D., & Alnaser, I. A. (2023). Preparation and Characterization of Poly(Lactic Acid)/Poly (ethylene glycol)-Poly(propyl glycol)-Poly(ethylene glycol) Blended Nanofiber Membranes for Fog Collection. Membranes, 13(1), 32. https://doi.org/10.3390/membranes13010032

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