Wei Peilin, Duan Yu, Wang Chen, Sun Panpan, Sun Na
College of Pharmacy, Shandong Second Medical University, Weifang 261053, China.
School of Bioscience and Technology, Shandong Second Medical University, Weifang 261053, China.
Molecules. 2024 May 12;29(10):2286. doi: 10.3390/molecules29102286.
The organization of modifiable and functional building components into various superstructures is of great interest due to their broad applications. Supramolecular self-assembly, based on rationally designed building blocks and appropriately utilized driving forces, is a promising and widely used strategy for constructing superstructures with well-defined nanostructures and diverse morphologies across multiple length scales. In this study, two homogeneous organohydrogels with distinct appearances were constructed by simply mixing polyoxometalate (phosphomolybdic acid, HPMo) and a double-tailed zwitterionic quaternary ammonium amphiphile in a binary solvent of water and dimethyl sulfoxide (DMSO). The delicate balance between electrostatic attraction and repulsion of anionic HPMo clusters and zwitterionic structures drove them to co-assemble into homogeneous organohydrogels with diverse microstructures. Notably, the morphologies of the organohydrogels, including unilamellar vesicles, onion-like vesicles, and spherical aggregates, can be controlled by adjusting the ionic interactions between the zwitterionic amphiphiles and phosphomolybdic acid clusters. Furthermore, we observed an organohydrogel fabricated with densely stacked onion-like structures (multilamellar vesicles) consisting of more than a dozen layers at certain proportions. Additionally, the relationships between the self-assembled architectures and the intermolecular interactions among the polyoxometalate, zwitterionic amphiphile, and solvent molecules were elucidated. This study offers valuable insights into the mechanisms of polyoxometalate-zwitterionic amphiphile co-assembly, which are essential for the development of materials with specific structures and emerging functionalities.
由于其广泛的应用,将可修饰的功能性构建组件组织成各种超结构备受关注。基于合理设计的构建单元和适当利用的驱动力的超分子自组装,是一种有前途且广泛应用的策略,用于构建具有明确纳米结构和跨多个长度尺度的多样形态的超结构。在本研究中,通过在水和二甲基亚砜(DMSO)的二元溶剂中简单混合多金属氧酸盐(磷钼酸,HPMo)和双尾两性离子季铵两亲物,构建了两种外观不同的均相有机水凝胶。阴离子HPMo簇与两性离子结构之间静电吸引和排斥的微妙平衡促使它们共同组装成具有不同微观结构的均相有机水凝胶。值得注意的是,通过调节两性离子两亲物与磷钼酸簇之间的离子相互作用,可以控制有机水凝胶的形态,包括单层囊泡、洋葱状囊泡和球形聚集体。此外,我们观察到一种由特定比例的十几层组成的具有密集堆叠洋葱状结构(多层囊泡)的有机水凝胶。此外,还阐明了自组装结构与多金属氧酸盐、两性离子两亲物和溶剂分子之间分子间相互作用的关系。本研究为多金属氧酸盐 - 两性离子两亲物共组装机制提供了有价值的见解,这对于开发具有特定结构和新兴功能的材料至关重要。