School of Chemical Engineering, Sungkyunkwan University , Suwon 16419, Republic of Korea.
ACS Nano. 2017 Feb 28;11(2):2133-2142. doi: 10.1021/acsnano.6b08342. Epub 2017 Feb 14.
Shape and morphology of polymeric particles are of great importance in controlling their optical properties or self-assembly into unusual superstructures. Confinement of block copolymers (BCPs) in evaporative emulsions affords particles with diverse structures, including prolate ellipsoids, onion-like spheres, oblate ellipsoids, and others. Herein, we report that the evaporation rate of solvent from emulsions encapsulating symmetric polystyrene-b-polybutadiene (PS-b-PB) determines the shape and internal nanostructure of micron-sized BCP particles. A distinct morphological transition from the ellipsoids with striped lamellae to the onion-like spheres was observed with decreasing evaporation rate. Experiments and dissipative particle dynamics (DPD) simulations showed that the evaporation rate affected the organization of BCPs at the particle surface, which determined the final shape and internal nanostructure of the particles. Differences in the solvent diffusion rates in PS and PB at rapid evaporation rates induced alignment of both domains perpendicular to the particle surface, resulting in ellipsoids with axial lamellar stripes. Slower evaporation rates provided sufficient time for BCP organization into onion-like structures with PB as the outermost layer, owing to the preferential interaction of PB with the surroundings. BCP molecular weight was found to influence the critical evaporation rate corresponding to the morphological transition from ellipsoid to onion-like particles, as well as the ellipsoid aspect ratio. DPD simulations produced morphologies similar to those obtained from experiments and thus elucidated the mechanism and driving forces responsible for the evaporation-induced assembly of BCPs into particles with well-defined shapes and morphologies.
聚合物颗粒的形状和形态对于控制其光学性质或自组装成不寻常的超结构非常重要。嵌段共聚物(BCP)在蒸发乳液中的限制赋予了具有各种结构的颗粒,包括长形椭球体、洋葱状球体、扁形椭球体等。本文报道了乳液中溶剂的蒸发速率决定了封装对称聚苯乙烯-聚丁二烯(PS-b-PB)的微米级 BCP 颗粒的形状和内部纳米结构。随着蒸发速率的降低,观察到从具有条纹层的椭球体到洋葱状球体的明显形态转变。实验和耗散粒子动力学(DPD)模拟表明,蒸发速率影响了颗粒表面上的 BCP 组织,从而决定了颗粒的最终形状和内部纳米结构。在快速蒸发速率下,PS 和 PB 中溶剂扩散速率的差异导致两个畴垂直于颗粒表面排列,从而形成具有轴向层状条纹的椭球体。较慢的蒸发速率为 BCP 组织成具有 PB 作为最外层的洋葱状结构提供了足够的时间,这是由于 PB 与周围环境的优先相互作用。发现 BCP 分子量影响从椭球到洋葱状颗粒的形态转变的临界蒸发速率,以及椭球的纵横比。DPD 模拟产生的形态与实验获得的形态相似,从而阐明了蒸发诱导 BCP 组装成具有明确定义形状和形态的颗粒的机制和驱动力。