Fabrication of Non-Wetting Mg(OH)2 Composites with Photoresponsive Capabilities and Their Environmental Restoration Performance

Nanomaterials Pub Date : 2024-07-24 DOI:10.3390/nano14151240
Dongmei Zhang, Jiaqi Zhao, Yangyang Peng, Yuchao Li, Wenbin Guo, Chengzhu Liao
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Abstract

Water pollution seriously affects the development of society and human life. There are various kinds of pollutants, including soluble pollutants and insoluble floaters on the water surface. Herein, the photocatalyst semiconductor BiOCl and superhydrophobic functional particles Mg(OH)2 were deposited on the surfaces of canvas and polyester felt to construct superhydrophobic canvas and polyester felt. The contact angles of the synthetic superhydrophobic canvas and polyester felt were measured as 152° and 155.3°, respectively. The selective adsorption of hexadecane was achieved using the wetting difference between the surface of water and pollutants floating on the surface. For dissolved pollutants, the surface wettability needed to be changed with the help of ethanol. The degradation efficiencies were all greater than 90%, demonstrating the versatility of the synthetic superhydrophobic canvas and polyester felt.
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具有光致伸缩性的非润湿 Mg(OH)2 复合材料的制备及其环境修复性能
水污染严重影响着社会的发展和人类的生活。污染物种类繁多,既有可溶性污染物,也有不溶于水的漂浮物。本文将光催化剂半导体 BiOCl 和超疏水功能粒子 Mg(OH)2 沉积在帆布和聚酯毡的表面,合成了超疏水帆布和聚酯毡。经测量,合成超疏水帆布和聚酯毡的接触角分别为 152°和 155.3°。利用水面与漂浮在水面上的污染物之间的润湿差实现了对十六烷的选择性吸附。对于溶解的污染物,需要借助乙醇来改变表面润湿性。降解效率均大于 90%,这证明了合成超疏水帆布和聚酯毡的多功能性。
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