Green superhydrophobic surface engineering of PET fabric for advanced water-solvent separation

被引:4
作者
Taghavian, Hadi [1 ,2 ]
Khan, Muhammad Zaman [3 ]
Wiener, Jakub [3 ]
Militky, Jiri [3 ]
Tomkova, Blanka [3 ]
Venkataraman, Mohanapriya [3 ]
Zafar, Zahid Ali [4 ]
Cernik, Miroslav [1 ]
Dvorak, Lukas [1 ]
机构
[1] Tech Univ Liberec, Inst Nanomat Adv Technol & Innovat, Studentska 2, Liberec 46117, Czech Republic
[2] Tech Univ Liberec, Fac Mechatron Informat & Interdisciplinary Studies, Studentska 2, Liberec 46117, Czech Republic
[3] Tech Univ Liberec, Fac Text Engn, Dept Mat Engn, Studentska 2, Liberec 46117, Czech Republic
[4] IMDEA Mat, Eric Kandel 2, Madrid 28906, Spain
关键词
Superhydrophobic coating; PET; Green synthesis; Biomimicry; Selective membrane; Water-solvent separation; Zinc oxide nanoparticles; NANOFIBROUS MEMBRANES; LOW-TEMPERATURE; ZNO NANORODS; OIL; PHOTOCATALYSIS; NANOPARTICLES;
D O I
10.1016/j.porgcoat.2024.108842
中图分类号
O69 [应用化学];
学科分类号
081704 ;
摘要
This paper presents the preparation of the PET membrane for effective organic solvent separation achieved through an advanced superhydrophobic surface engineering of PET fabric utilizing biomimicry and a green chemistry approach. The superhydrophobicity of the PET surface was reached through a hierarchical nano- composite coating that involved the integration of biomimetic polydopamine (PDA) coating, green-synthesized zinc oxide (ZnO) nanoparticles (NPs), and non-fluorinated quaternary ammonium cation silane (Si-QAC) coverage. The morphology and surface chemical composition of the resultant Si-QAC/ZnO/PDA@PET membrane were characterized by SEM, EDS, FT-IR, XRD, and AFM analysis. The surface topography and water contact angle were also correlated with surface roughness and its superhydrophobicity. The resulting Si-QAC/ZnO/PDA@PET membrane exhibited promising superhydrophobic properties, characterized by a water contact angle ranging from 150 degrees to 160 degrees and a roll-off angle between 5 degrees and 2 degrees as well as stability against severe conditions, including acidic and alkaline exposure, mechanical abrasion, and UV radiations. Moreover, the Si-QAC/ZnO/PDA@PET membrane exhibited bacterial repulsive properties against E. coli and Staphylococcus sp. The separation efficiency of various aliphatic and aromatic organic solvents (n-hexane, toluene, chloroform, and petroleum ether) from water higher than 90 % was also observed, making the membrane a potential candidate for different industrial applications, particularly for the separation of organic solvents from water.
引用
收藏
页数:16
相关论文
共 65 条
[41]   Antimicrobial activity assessment of textiles: standard methods comparison [J].
Pinho, Eva ;
Magalhaes, Lucia ;
Henriques, Mariana ;
Oliveira, Rosario .
ANNALS OF MICROBIOLOGY, 2011, 61 (03) :493-498
[42]   Hierarchically Porous Bio-Based Sustainable Conjugate Sponge for Highly Selective Oil/Organic Solvent Absorption [J].
Ramakrishnan, Rohith K. ;
Padil, Vinod V. T. ;
Skodova, Marcela ;
Waclawek, Stanislaw ;
Cernik, Miroslav ;
Agarwal, Seema .
ADVANCED FUNCTIONAL MATERIALS, 2021, 31 (18)
[43]   Cassie-Baxter and Wenzel States and the Effect of Interfaces on Transport Properties across Membranes [J].
Rauter, Michael T. ;
Schnell, Sondre K. ;
Kjelstrup, Signe .
JOURNAL OF PHYSICAL CHEMISTRY B, 2021, 125 (46) :12730-12740
[44]   Insights into the hexamine-assisted ZnO based-MOFs formation on PET fabric for improved self-cleaning, flame retardant, and hydrophilic properties [J].
Sadeghi, S. ;
Montazer, M. ;
Dadashian, F. .
PROGRESS IN ORGANIC COATINGS, 2024, 192
[45]   Modified jet flotation in oil (petroleum) emulsion/water separations [J].
Santander, M. ;
Rodrigues, R. T. ;
Rubio, J. .
COLLOIDS AND SURFACES A-PHYSICOCHEMICAL AND ENGINEERING ASPECTS, 2011, 375 (1-3) :237-244
[46]   Constructing Superhydrophobicity by Self-Assembly of SiO2@Polydopamine Core-Shell Nanospheres with Robust Oil-Water Separation Efficiency and Anti-Corrosion Performance [J].
Shi, Zhen ;
Zeng, Hang ;
Yuan, Yusheng ;
Shi, Nan ;
Wen, Lin ;
Rong, Huawei ;
Zhu, Dapeng ;
Hu, Liang ;
Ji, Lianze ;
Zhao, Lizhong ;
Zhang, Xuefeng .
ADVANCED FUNCTIONAL MATERIALS, 2023, 33 (16)
[47]   Growth of Shape- and Size-Selective Zinc Oxide Nanorods by a Microwave-Assisted Chemical Bath Deposition Method: Effect on Photocatalysis Properties [J].
Shinde, Vaishali R. ;
Gujar, Tanaji P. ;
Noda, Takeshi ;
Fujita, Daisuke ;
Vinu, Ajayan ;
Grandcolas, Mathieu ;
Ye, Jinhua .
CHEMISTRY-A EUROPEAN JOURNAL, 2010, 16 (34) :10569-10575
[48]   Understanding the Temperature Dependence of Contact Angles of Water on a Smooth Hydrophobic Surface under Pressurized Conditions: An Experimental Study [J].
Song, Jia-Wen ;
Ma, Meng-Chen ;
Fan, Li-Wu .
LANGMUIR, 2020, 36 (32) :9586-9595
[49]   Application of Stimuli Responsive Microgel for Creation of Smart Cotton Fabric with Antibacterial Properties [J].
Stular, Danaja ;
Simoncic, Barbara ;
Jerman, Ivan ;
Tomsic, Brigita .
TEKSTILEC, 2016, 59 (02) :142-148
[50]   Advanced (bio)fouling resistant surface modification of PTFE hollow-fiber membranes for water treatment [J].
Taghavian, Hadi ;
Cernik, Miroslav ;
Dvorak, Lukas .
SCIENTIFIC REPORTS, 2023, 13 (01)