Han Yujin, Kim Hyejeong
School of Mechanical Engineering, Korea University, Seoul 02841, Republic of Korea.
Max Planck Institute for Dynamics and Self-Organization, Am Faßberg 17, 37077 Göttingen, Germany.
Langmuir. 2023 Sep 26;39(38):13695-13704. doi: 10.1021/acs.langmuir.3c01917. Epub 2023 Sep 14.
Amphiphilic Janus particles typically comprise two distinct hemispheres with spatially dispersed physicochemical properties. The anisotropic structure and physicochemical properties of Janus particles can be exploited for various applications. However, their preparation typically requires complex and sophisticated processes and expensive equipment to control the formation of different structures and chemical compositions. Herein, a simple synthetic approach for the facile fabrication of versatile Janus particles with efficient control of the Janus ratio and wettability based on particle fixation at a three-phase interface and photopolymerization is reported. Agarose gel and surfactant are used to control the surface-coated boundaries of the Janus particles through the equilibrium of a floating microparticle at the fluid interface. poly(propylene glycol) diacrylate or poly(-isopropylacrylamide) coating on polystyrene-based microparticles allows easy control of the chemical functionality of the particle surfaces. Depending on the particle morphology and wettability, the interfacial behavior between two immiscible liquids can be adjusted, which allows the stabilization of Pickering emulsions that encapsulate independent oil droplets in water or vice versa. This facile approach has the potential to enable more efficient mass production of Janus particles and their use in various applications, such as biomedical and environmental engineering.
两亲性Janus粒子通常由两个具有空间分散物理化学性质的不同半球组成。Janus粒子的各向异性结构和物理化学性质可用于各种应用。然而,其制备通常需要复杂精密的工艺和昂贵的设备来控制不同结构和化学成分的形成。本文报道了一种基于在三相界面处固定粒子和光聚合反应,简便合成通用Janus粒子的方法,该方法能够有效控制Janus比例和润湿性。琼脂糖凝胶和表面活性剂通过漂浮在流体界面的微粒的平衡来控制Janus粒子的表面包覆边界。基于聚苯乙烯的微粒上的聚丙二醇二丙烯酸酯或聚(N-异丙基丙烯酰胺)涂层可轻松控制粒子表面的化学功能。根据粒子形态和润湿性,可以调节两种不混溶液体之间的界面行为,这使得能够稳定Pickering乳液,该乳液可将独立的油滴包裹在水中,反之亦然。这种简便的方法有可能实现Janus粒子更高效的大规模生产及其在各种应用中的使用,如生物医学和环境工程。