Qi Xian, Du Yaxian, Zhang Ziqiang, Zhang Xu
National-Local Joint Engineering Laboratory for Energy Conservation of Chemical Process Integration and Resources Utilization, School of Chemical Engineering and Technology, Hebei University of Technology, Tianjin 300401, China.
Nanomaterials (Basel). 2023 Jan 22;13(3):455. doi: 10.3390/nano13030455.
Janus particles for oil-water separation have attracted widespread attention in recent years. Herein, we prepared a bowl-shaped Janus particle that could rapidly separate oil and water through a thiol-ene click reaction and selective etching. Firstly, snowman-like composite microspheres based on silica and mercaptopropyl polysilsesquioxane (SiO@MPSQ) were prepared by a hydrolytic condensation reaction and phase separation, and the effects of the rotational speed and molar ratios on their microscopic morphologies were investigated. Subsequently, bowl-shaped Janus particles with convex hydrophilic and concave oleophilic surfaces were prepared via a thiol-ene click reaction followed by HF etching. Our amphiphilic bowl-shaped Janus particles could remarkably separate micro-sized oil droplets from an n-heptane-water emulsion with a separation efficiency of >98% within 300 s. Based on the experimental and theoretical results, we proposed the underlying mechanism for the coalescence of oil droplets upon the addition of the amphiphilic bowl-shaped Janus particles.
近年来,用于油水分离的Janus颗粒引起了广泛关注。在此,我们通过硫醇-烯点击反应和选择性蚀刻制备了一种碗状Janus颗粒,其能够快速分离油和水。首先,通过水解缩合反应和相分离制备了基于二氧化硅和巯丙基聚倍半硅氧烷的雪人状复合微球(SiO@MPSQ),并研究了转速和摩尔比对其微观形态的影响。随后,通过硫醇-烯点击反应,然后进行HF蚀刻,制备了具有凸面亲水和凹面亲油表面的碗状Janus颗粒。我们的两亲性碗状Janus颗粒能够在300秒内从正庚烷-水乳液中显著分离出微米级油滴,分离效率>98%。基于实验和理论结果,我们提出了添加两亲性碗状Janus颗粒后油滴聚结的潜在机制。