Chemical and Biomolecular Engineering, Cornell University, Ithaca, New York 14853, USA.
J Chem Phys. 2012 Jun 21;136(23):234905. doi: 10.1063/1.4729159.
Pure diblock copolymer melts exhibit a narrow range of conditions at which bicontinuous and cocontinuous phases are stable; such conditions and the morphology of such phases can be tuned by the use of additives. In this work, we have studied a bidisperse system of diblock copolymers using theory and simulation. In particular, we elucidated how a short, lamellar-forming diblock copolymer modifies the phase behavior of a longer, cylinder-forming diblock copolymer. In a narrow range of intermediate compositions, self-consistent field theory predicts the formation of a gyroid phase although particle-based simulations show that three phases compete: the gyroid phase, a disordered cocontinuous phase, and the cylinder phase, all having free energies within error bars of each other. Former experimental studies of a similar system have yielded an unidentified, partially irregular bicontinuous phase, and our simulations suggest that at such conditions the formation of a partially transformed network phase is indeed plausible. Close examination of the spatial distribution of chains reveals that packing frustration (manifested by chain stretching and low density spots) occurs in the majority-block domains of the three competing phases simulated. In all cases, a double interface around the minority-block domains is also detected with the outer one formed by the short chains, and the inner one formed by the longer chains.
纯嵌段共聚物熔体在双连续相和共连续相稳定的条件范围内很窄;通过使用添加剂可以调整这些条件和这些相的形态。在这项工作中,我们使用理论和模拟研究了两亲性嵌段共聚物的双分散体系。具体来说,我们阐明了短的层状嵌段共聚物如何改变较长的圆柱状嵌段共聚物的相行为。在中间组成的一个狭窄范围内,自洽场理论预测会形成一个向列相,尽管基于粒子的模拟表明有三个相竞争:向列相、无序的共连续相和圆柱相,它们的自由能彼此之间在误差范围内。以前对类似体系的实验研究得到了一种未被识别的部分不规则的双连续相,我们的模拟表明,在这种条件下,形成部分转化的网络相确实是合理的。对链的空间分布的仔细检查表明,在模拟的三种竞争相中,大多数嵌段域中存在着堆积受挫(表现为链拉伸和低密度点)。在所有情况下,还检测到少数嵌段域周围的双界面,外部由短链形成,内部由长链形成。