Instability and Soft Patterning Laboratory, Department of Chemical Engineering, Indian Institute of Technology Kharagpur , Kharagpur, West Bengal 721302, India.
Nano Lett. 2014 Dec 10;14(12):7009-16. doi: 10.1021/nl5033205. Epub 2014 Dec 1.
We report a facile technique for fabricating an ordered array of nearly equal-sized mesoscale polymer droplets of two constituent polymers (polystyrene, PS and poly(methyl methacrylate), PMMA) arranged in an alternating manner on a topographically patterned substrate. The self-organized array of binary polymers is realized by sequential spin dewetting. First, a dilute solution of PMMA is spin-dewetted on a patterned substrate, resulting in an array of isolated PMMA droplets arranged along the substrate grooves due to self-organization during spin coating itself. The sample is then silanized with octadecyltrichlorosilane (OTS), and subsequently, a dilute solution of PS is spin-coated on to it, which also undergoes spin dewetting. The spin-dewetted PS drops having a size nearly equal to the pre-existing PMMA droplets position themselves between two adjacent PMMA drops under appropriate conditions, forming an alternating binary polymer droplet array. The alternating array formation takes place for a narrow range of solution concentration for both the polymers and depends on the geometry of the substrate. The size of the droplets depends on the extent of confinement, and droplets as small as 100 nm can be obtained by this method, on a suitable template. The findings open up the possibility of creating novel surfaces having ordered multimaterial domains with a potential multifunctional capability.
我们报告了一种在具有图案化表面的基底上制备两亲聚合物(聚苯乙烯 PS 和聚甲基丙烯酸甲酯 PMMA)的近等尺寸的有序介观聚合物液滴有序阵列的简单技术。通过顺序旋涂去湿实现了二元聚合物的自组织排列。首先,将 PMMA 的稀溶液旋涂在图案化的基底上,由于旋涂过程中的自组织,导致 PMMA 液滴沿基底沟槽排列成孤立的液滴阵列。然后,用十八烷基三氯硅烷(OTS)对其进行硅烷化处理,随后,将 PS 的稀溶液旋涂在其上,其也经历旋涂去湿。在适当的条件下,具有几乎与预存在的 PMMA 液滴尺寸相等的尺寸的 PS 旋涂液滴会在两个相邻的 PMMA 液滴之间定位,形成交替的二元聚合物液滴阵列。交替的阵列形成发生在两种聚合物的溶液浓度很窄的范围内,并且取决于基底的几何形状。液滴的尺寸取决于限制的程度,通过这种方法可以获得小至 100nm 的液滴,这需要合适的模板。这些发现为具有有序多材料域和潜在多功能能力的新型表面的创建开辟了可能性。