Department of Chemistry, University of Sheffield, Sheffield, United Kingdom.
Langmuir. 2012 Sep 11;28(36):12955-61. doi: 10.1021/la302384j. Epub 2012 Aug 27.
In this Article, we show that inclined silicon surfaces patterned with poly(methacrylic acid) brushes are able to control the position and movement of 20 μm silica particles, which are propelled across the patterned surface by sedimentation forces. Three different types of behavior were observed depending on the angle between the direction in which a particle sedimented and the orientation of the polymer-brush silicon interface. At small angles, particles were found to sediment to the brush interface and then sediment following the direction of the brush interface. At larger angles, particles sedimented to the interface and then followed the direction of the brush interface, but then after a certain distance changed direction to pass over the interface. At the largest angles where the brush interface was approximately perpendicular to the motion of the particle, particles were found to travel over the interface unperturbed. This behavior was also found to be pH dependent, allowing the formation of pH responsive "gates", which allow particles to pass at low pH but not at high pH. It was also found that if patterned polymer brush surfaces were oriented in the correct way, they were able to control the number of particles present at specific locations.
在本文中,我们展示了经过聚(甲基丙烯酸)刷图案化的倾斜硅表面能够控制 20μm 二氧化硅颗粒的位置和运动,这些颗粒通过沉降力在图案化表面上移动。根据颗粒沉降的方向与聚合物刷硅界面的方向之间的角度,观察到了三种不同的行为。在小角度下,颗粒沉降到刷界面,然后沿着刷界面的方向沉降。在较大的角度下,颗粒沉降到界面,然后沿着刷界面的方向,但在经过一定距离后改变方向越过界面。在刷界面几乎垂直于颗粒运动的最大角度下,颗粒在不受干扰的情况下越过界面。这种行为也被发现是 pH 依赖性的,允许形成 pH 响应的“门”,允许颗粒在低 pH 值下通过,但不能在高 pH 值下通过。还发现,如果图案化的聚合物刷表面以正确的方式定向,它们能够控制特定位置的颗粒数量。