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Microsyringe-based slug-flow microextraction for rapid and accurate determination of antibiotics in highly saline seawater.: Presents a novel water-based microextraction method for detecting antibiotics in seawater, crucial for environmental monitoring (Zhang et al., 2024).
Assessment of Hydrophilicity/Hydrophobicity in Mesoporous Silica by Combining Adsorption, Liquid Intrusion, and Solid-State NMR Spectroscopy.: Examines water interactions with silica surfaces, offering insights critical for material science and catalysis research (Collados et al., 2024).
A novel zwitterionic magnetic nanocomposite developed for non-invasive speciation analysis of inorganic chromium.: Discusses a water-based analytical method using a magnetic nanocomposite for environmental and health-related chromium detection (Faiz et al., 2024).
Solving the retention time repeatability problem of hydrophilic interaction liquid chromatography.: Addresses challenges in water-based chromatography, improving the reliability and efficiency of analytical methods (Serafimov et al., 2024).
Microsyringe-based slug-flow microextraction for rapid and accurate determination of antibiotics in highly saline seawater.
Assessment of Hydrophilicity/Hydrophobicity in Mesoporous Silica by Combining Adsorption, Liquid Intrusion, and Solid-State NMR Spectroscopy.: Examines water interactions with silica surfaces, offering insights critical for material science and catalysis research (Collados et al., 2024).
A novel zwitterionic magnetic nanocomposite developed for non-invasive speciation analysis of inorganic chromium.
Solving the retention time repeatability problem of hydrophilic interaction liquid chromatography.: Addresses challenges in water-based chromatography, improving the reliability and efficiency of analytical methods (Serafimov et al., 2024).