材料科学
埃洛石
纳米复合材料
二氧化钛
热重分析
接触角
热稳定性
复合材料
基质(水族馆)
化学工程
硬脂酸
碳纳米管
傅里叶变换红外光谱
钛
扫描电子显微镜
涂层
超临界二氧化碳
表面改性
作者
Daniel Narh,Yushaw D. Alabani,Petrina Okrah,Ibrahim A. Siddiq,Joseph Morgan,Sylvester A. Manso,Derrick K. Asaase,Benjamin Agyei‐Tuffour,Emmanuel Nyankson
标识
DOI:10.1002/admi.202500082
摘要
Abstract The unique properties of superhydrophobic surfaces are explored for various applications. In this study, superhydrophobic nanostructured surfaces are fabricated on glass substrates using titanium dioxide (TiO 2 ), silver‐coated titanium dioxide (Ag‐TiO 2 ), and halloysite clay nanotubes (HNTs). The noble metal, silver (Ag, 0.5 wt.%) is loaded onto TiO 2 by the photodeposition method. Characterization techniques, including X‐ray diffraction, Raman, and Fourier‐transform Infrared spectroscopy, confirm the formation of the nanocomposites. The thermogravimetric analysis demonstrates thermal stability, and optical microscopy reveals an even distribution of the nanocomposite on the glass substrate. Nanocomposites of HNT‐Ag‐TiO 2 and HNT‐TiO 2 , with varying percentages of HNTs, are synthesized and spray‐coated onto a glass substrate while modified with myristic and stearic acid. A superhydrophobic contact angle of 159.35° ± 2.7° and a sliding angle of 8° is obtained for HNT‐TiO 2 ‐stearic acid with 66.67 wt.% TiO 2 . Additionally, HNT‐TiO 2 ‐stearic acid exhibits excellent chemical, mechanical, and thermal stability. The nanocomposite also displays self‐cleaning properties, effectively shedding kaolin and carbon black contaminants.
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