Macromolecular Chemistry II, University of Bayreuth, D-95440 Bayreuth, Germany.
Department of Applied Physics, Aalto University School of Science, FIN-02150 Espoo, Finland.
Nat Commun. 2016 Jun 29;7:12097. doi: 10.1038/ncomms12097.
Block copolymers self-assemble into a variety of nanostructures that are relevant for science and technology. While the assembly of diblock copolymers is largely understood, predicting the solution assembly of triblock terpolymers remains challenging due to complex interplay of block/block and block/solvent interactions. Here we provide guidelines for the self-assembly of linear ABC triblock terpolymers into a large variety of multicompartment nanostructures with C corona and A/B cores. The ratio of block lengths NC/NA thereby controls micelle geometry to spheres, cylinders, bilayer sheets and vesicles. The insoluble blocks then microphase separate to core A and surface patch B, where NB controls the patch morphology to spherical, cylindrical, bicontinuous and lamellar. The independent control over both parameters allows constructing combinatorial libraries of unprecedented solution nanostructures, including spheres-on-cylinders/sheets/vesicles, cylinders-on-sheets/vesicles, and sheets/vesicles with bicontinuous or lamellar membrane morphology (patchy polymersomes). The derived parameters provide a logical toolbox towards complex self-assemblies for soft matter nanotechnologies.
嵌段共聚物可以自组装成各种与科学和技术相关的纳米结构。虽然二嵌段共聚物的组装已经得到了广泛的理解,但由于嵌段/嵌段和嵌段/溶剂相互作用的复杂相互作用,预测三嵌段共聚物的溶液组装仍然具有挑战性。在这里,我们为线性 ABC 三嵌段共聚物自组装成具有 C 冠和 A/B 核的各种多隔室纳米结构提供了指导。嵌段长度比 NC/NA 从而控制胶束的几何形状为球体、圆柱、双层片和囊泡。不溶性嵌段然后微相分离到核心 A 和表面斑块 B,其中 NB 控制斑块形态为球形、圆柱形、双连续和层状。对这两个参数的独立控制允许构建前所未有的溶液纳米结构的组合文库,包括球体在圆柱/片/囊泡上、圆柱在片/囊泡上,以及具有双连续或层状膜形态的片/囊泡(有斑块的聚合物囊泡)。所得到的参数为软物质纳米技术的复杂自组装提供了一个逻辑工具包。