Li Xuan, Tang Ping, Qiu Feng, Zhang Hongdong, Yang Yuliang
Key Laboratory of Molecular Engineering of Polymer, Ministry of Education, and Department of Macromolecular Science, Fudan University, Shanghai 200433, China.
J Phys Chem B. 2006 Feb 9;110(5):2024-30. doi: 10.1021/jp055951j.
The polydispersity effect of amphiphilic AB diblock copolymers on the self-assembled morphologies in solution has been investigated by the real-space implementation of self-consistent field theory (SCFT) in two dimensions (2D). The polydispersity is artificially obtained by mixing binary diblock copolymers where the hydrophilic or hydrophobic blocks are composed of two different lengths while the other block length is kept the same. The main advantage is that this simple polydispersity can easily distinguish the difference of aggregates in the density distribution of long and short block length intuitionally and quantitatively. The morphology transition from vesicles to micelles is observed with increasing polydispersity of copolymers due to the length segregation of copolymers. For polydisperse hydrophilic or hydrophobic blocks, the short blocks tend to distribute at the interfaces between hydrophilic and hydrophobic blocks while the long blocks stretch to the outer space. More specifically, by quantitatively taking the sum of all the concentration distribution of long and short chains over the inside and outside surface areas of the vesicle, it is found that long blocks prefer to locate on the outside surface of the vesicle while short ones prefer the inside. Such length segregation leads to large curvature of the aggregate, thus resulting in the decrease of the aggregate size.
通过二维(2D)自洽场理论(SCFT)的实空间实现,研究了两亲性AB二嵌段共聚物在溶液中自组装形态的多分散效应。多分散性是通过混合二元二嵌段共聚物人为获得的,其中亲水或疏水嵌段由两种不同长度组成,而另一个嵌段长度保持不变。主要优点是这种简单的多分散性可以直观且定量地轻松区分长、短嵌段长度密度分布中聚集体的差异。由于共聚物的长度分离,随着共聚物多分散性的增加,观察到从囊泡到胶束形态的转变。对于多分散的亲水或疏水嵌段,短嵌段倾向于分布在亲水和疏水嵌段之间的界面处,而长嵌段则伸展到外部空间。更具体地说,通过定量计算囊泡内外表面积上所有长链和短链浓度分布的总和,发现长嵌段更喜欢位于囊泡的外表面,而短嵌段更喜欢内表面。这种长度分离导致聚集体的大曲率,从而导致聚集体尺寸的减小。