教授
硕士生导师
教师拼音名称:wangzhaobo
学位:工学博士
职称:教授
学科:材料物理与化学
材料学材料加工工程材料科学与工程其他专业邮箱:
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2019-09-15 山东省优秀教师
2019-05-16 山东省优秀研究生指导教师
2020-12-10 青岛市高校教学名师
2019-09-04 青岛市教书育人楷模
2019-09-15 青岛市新时代最美劳动者
2020-11-10 山东省大学生高分子实用技术大赛“优秀指导教师”
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关键字:COTTON FABRICS; SURFACE; POLYURETHANE; TRANSPARENT
摘要:With the continuous occurrence of oil-spill accidents, superhydrophobic materials demonstrate tremendous potential in oil-water separation. In this research work, SiO2 nanospheres with surface mercapto groups were prepared by the condensation reaction of 3-mercaptopropyltriethoxysilane (KH590) and hydroxyl groups on the surface of silica (SiO2) particles. Subsequently, HTPB-coated SiO2 superhydrophobic particles were obtained through the thiol-ene click chemistry reaction between the SiO2 nanospheres and the hydroxyl terminated polybutadiene (HTPB). Depending on the polar attraction between the terminal hydroxyl groups of HTPB and the hydroxyl groups on the surface of SiO2, SiO2 nanospheres could be firmly coated with HTPB. Fortunately, stable and durable superhydrophobic lipophilic SiO2 particles (Si-HTs) was obtained. Because of the existence of micronano structures, the resultant Si-HTs could easily float on the oil-water surface, and effectively absorb oil solvents more than 4 times its own weight with an ultrahigh separation efficiency above 99%. Even under strong acid and strong alkali conditions or in the seawater environments, the Si-HTs were afforded with effective oil-absorption capability and high recyclability over 20 times. Consequently, the Si-HTs prepared show great potential as a superhydrophobic nanoparticle for low-cost, high-efficiency and environmentally friendly oil-water separation.
卷号:335
期号:
是否译文:否