Gao Ya, Deng Hanlin, Li Weihua, Qiu Feng, Shi An-Chang
State Key Laboratory of Molecular Engineering of Polymers, Collaborative Innovation Center of Polymers and Polymer Composite Materials, Department of Macromolecular Science, Fudan University, Shanghai 200433, China.
Department of Physics and Astronomy, McMaster University, Hamilton, Ontario, Canada L8S 4M1.
Phys Rev Lett. 2016 Feb 12;116(6):068304. doi: 10.1103/PhysRevLett.116.068304. Epub 2016 Feb 11.
The formation of ordered phases from block copolymers is driven by a delicate balance between the monomer-monomer interaction and chain configurational entropy. The configurational entropy can be regulated by designed chain architecture, resulting in a new entropy-driven mechanism to control the self-assembly of ordered phases from block copolymers. An effective routine to regulate the configurational entropy is to utilize multiarm architecture, in which the entropic contribution to the free energy could be qualitatively controlled by the fraction of bridging configurations. As an illustration of this mechanism, the phase behavior of two AB-type multiarm block copolymers, B0-(Bi-Ai)m and (B1-Ai-B2)m where the minority A blocks form cylindrical or spherical domains, are examined using the self-consistent field theory (SCFT). The SCFT results demonstrate that the packing symmetry of the cylinders or spheres can be controlled by the length of the bridging B blocks. Several nonclassical ordered phases, including a novel square array cylinder with p4mm symmetry, are predicted to form from the AB-type multiarm block copolymers.
嵌段共聚物形成有序相是由单体 - 单体相互作用和链构象熵之间的微妙平衡驱动的。构象熵可以通过设计链结构来调节,从而产生一种新的熵驱动机制来控制嵌段共聚物有序相的自组装。调节构象熵的一种有效方法是利用多臂结构,其中对自由能的熵贡献可以通过桥接构型的比例进行定性控制。作为这种机制的一个例子,使用自洽场理论(SCFT)研究了两种AB型多臂嵌段共聚物B0-(Bi-Ai)m和(B1-Ai-B2)m的相行为,其中少数A嵌段形成圆柱形或球形域。SCFT结果表明,圆柱或球体的堆积对称性可以通过桥接B嵌段的长度来控制。预计AB型多臂嵌段共聚物会形成几种非经典有序相,包括具有p4mm对称性的新型方形阵列圆柱相。