Department of Chemical Engineering, UC Davis , Davis, California 95616, United States.
ACS Nano. 2018 Feb 27;12(2):1413-1419. doi: 10.1021/acsnano.7b07777. Epub 2018 Feb 5.
Multigeometry nanoparticles with high complexity in composition and structure have attracted significant attention for enhanced functionality. We assess a simple but versatile strategy to construct hybrid nanoparticles with subdivided geometries through the cooperative assembly of diblock copolymer blends with asymmetric architectures. We report the formation of multicompartmental, vesicular, cylindrical, and spherical structures from pure AB systems. Then, we explore the assemblies of binary AB/AC blends, where the two incompatible, hydrophobic diblock copolymers subdivide into self-assembled local geometries, and the complexity of the obtained morphologies increases. We expand the strategy to ternary AB/AC/AD systems by tuning the effect of phase separation of different hydrophobic domains on the surface or internal region of the nanoparticle. The kinetic control of the coassembly in the initial stage is crucial for controlling the final morphology. The interactions of copolymers with different block lengths and chemistries enable the stabilization of interfaces, rims and ends of subdomains in the hybrid multigeometry nanoparticles. With further exploration of size and shape, the dependence of local geometry on the volume fraction is discussed. We show an efficient approach for controllable multigeometry nanoparticle construction that will be useful for multifunctional and hierarchical nanomaterials.
具有高复杂度组成和结构的多几何形状纳米粒子因其增强的功能而引起了极大的关注。我们评估了一种简单但通用的策略,通过具有不对称结构的嵌段共聚物共混物的协同组装,构建具有细分几何形状的混合纳米粒子。我们报告了通过纯 AB 体系形成多腔室、囊泡、圆柱和球形结构。然后,我们探索了二元 AB/AC 共混物的组装,其中两个不相容的疏水性嵌段共聚物细分为自组装的局部几何形状,并且所获得的形态的复杂性增加。我们通过调节不同疏水区在纳米粒子表面或内部区域的相分离对其进行扩展到三元 AB/AC/AD 体系。在初始阶段共组装的动力学控制对于控制最终形态至关重要。具有不同链长和化学性质的共聚物的相互作用能够稳定混合多几何形状纳米粒子中亚域的界面、边缘和末端。通过进一步探索尺寸和形状,讨论了局部几何形状对体积分数的依赖性。我们展示了一种用于可控多几何形状纳米粒子构建的有效方法,这对于多功能和分级纳米材料将是有用的。