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Superhydrophobic waterproof-breathable membranes have attracted considerable interest owing to their multifunctional applications in self-cleaning, anti-icing, anticorrosion, outdoor tents, and protective clothing. Despite the researches pertaning to the construction of superhydrophobic functional membranes by nanoparticle finishing have increased drastically, the disconnected particle component is easy to fall off from the membranes under deformation and wear conditions, which has restricted their wide use in practice. Here, robust superhydrophobic microporous membranes were prepared via a facile and environmentally friendly strategy by dip-coating amino-silicone oil (ASO) onto the electrospun polyacrylonitrile (PAN) membranes, followed by SiO nanoparticles (SiO NPs) blade coating. Compared with hydrophilic PAN membranes, the modified membranes exhibited superhydrophobic surface with an advancing water contact angle up to 156°, after introducing ASO as low surface energy substance and SiO NPs as filler to reduce the pore size and construct the multihierarchical rough structure. Varying the concentrations of ASO and SiO NPs systematically, the PAN electrospun membranes modified with 1 wt % ASO and 0.1 wt % SiO NPs were endowed with good water-resistance (74.3 kPa), relative low thermal conductivity (0.0028 W m K), modest vapor permeability (11.4 kg m d), and air permeability (20.5 mm s). Besides, the inorganic-organic hybrid coating of ASO/SiO NPs could maintain its superhydrophobicity even after 40 abrasion cycles. The resulting membranes were found to resist variations on the pH scale from 0 to 12, and retained their water repellent properties when exposed to harsh acidic and alkali conditions. This facile fabrication of durable fluorine-free superhydrophobic membranes simultaneous with good waterproof-breathable performance provides the advantages for potential applications in self-cleaning materials and versatile protective clothing.
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http://dx.doi.org/10.1021/acsami.7b02594 | DOI Listing |
J Hazard Mater
September 2025
College of Veterinary Medicine, Northeast Agricultural University, Harbin 150030, PR China; Key Laboratory of the Provincial Education Department of Heilongjiang for Common Animal Disease Prevention and Treatment, College of Veterinary Medicine, Northeast Agricultural University, Harbin 150030, PR C
Silicon dioxide nanoparticles (SiO NPs) are a novel material with a wide range of applications whose cumulative effects in the body pose certain health risks. The types of gastric injuries caused by different-sized SiO NPs and their mechanisms, however, remain unclear. Based on this, we established a mouse subchronic exposure model (10 mg/kg/d, 21 consecutive days of tube-feeding) with different SiO NP sizes (50, 300, and 1000 nm) in conjunction with in vitro MC9 and BMMCs models (160 μg/mL exposure for 24 h) to explore the gastric injury mechanisms.
View Article and Find Full Text PDFACS Omega
August 2025
College of Safety Science and Engineering, Xi'an University of Science and Technology, Xi'an 710054, China.
To enhance the performance of fluorine-free firefighting foam, a mixed dispersion system comprising silica nanoparticles (SiO NPs), guar gum (GG), and surfactants was developed and systematically evaluated. Compared with systems containing only NPs or GG, the combined formulation significantly improved foam stability and rheological properties. The optimized GG-NPs formulation exhibited the lowest drainage volume and the highest storage modulus, indicating enhanced structural integrity.
View Article and Find Full Text PDFBMC Plant Biol
August 2025
Department of Horticultural Science, Faculty of Agriculture, University of Maragheh, Maragheh, Iran.
Background: Today, improving the nutritional status of plants using external supplements, particularly based on nanotechnology, is of great importance to compensate for the damage caused by abiotic stresses. Salinity is one of the chief environmental stresses limiting the growth and yield of crops by reducing the osmotic potential and disrupting the absorption of water and nutrients. The present study was conducted to compare the priming effect of foliar spraying the following treatments: silicon nanoparticles (SiO NPs; 50 mg L), chitosan nanoparticles (CTS NPs; 0.
View Article and Find Full Text PDFMaterials (Basel)
August 2025
School of Materials Science and Engineering, University of Science and Technology Beijing, Beijing 100083, China.
The utility of nanostructured TiO in the degradation of organic compounds and the disinfection of pathogenic microorganisms represents an important endeavor in photocatalysis. However, the low photocatalytic efficiency of TiO remains challenging. Herein, we report a robust photocatalytic route to benzene removal rendered by enhancing its adsorption capacity via rationally designed mesoporous SiO-coated TiO colloids.
View Article and Find Full Text PDFMikrochim Acta
August 2025
School of Pharmacy, Collaborative Innovation Center of Advanced Drug Delivery System and Biotech Drugs in Universities of Shandong, Key Laboratory of Molecular Pharmacology and Drug Evaluation (Yantai University), Ministry of Education, Yantai University, Yantai, 264005, People's Republic of China.
CdTe QD-doped MIP-based TLC combined with a miniaturized fluorimeter system (namely the system) was developed to simultaneously detect malachite green (4-[(4-(dimethylamino)phenyl)(phenyl)methyl]-N,N-dimethylbenzenaminium chloride, MG) and crystal violet (4-(Bis{4-(dimethylamino)phenyl}methylidene)-N,N-dimethylcyclohexa-2,5-dien-1-iminium chloride, CV). The system integrated CdTe quantum dots-based molecularly imprinted polymers nanoparticles (CdTe-MIP/SiO NPs) with thin layer chromatography (TLC) plates. Firstly, CdTe-MIP/SiO NPs were synthesized by forming an imprinted layer on silica nanoparticle surfaces through a simple one-pot reaction.
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