Key Laboratory of Nonferrous Metals Chemistry and Resources Utilization of Gansu Province, State Key Laboratory of Applied Organic Chemistry, and College of Chemistry and Chemical Engineering, Lanzhou University, Lanzhou City, Gansu Province, China.
Soft Matter. 2017 Jul 21;13(27):4791-4798. doi: 10.1039/c7sm01055a. Epub 2017 Jul 5.
The self-assembly process of formation of worm-like micelles of a block copolymer-platinum(ii) complex hybrid is investigated with respect to the influence of solvent quality. When the solvent quality is moderately weakened, unilamellar free-standing sheets are achieved, in which the worm-like micelles snap off to form star micelles together with a few short worms. Extremely worsened solvent quality leads to unilamellar vesicle-like nanostructures, onto which only star micelles emerged. With the intermediate solvent quality, the sheets coexist with the vesicle-like nanostructures. This is well correlated with mechanistic insights regarding the morphological transition from sheet- to vesicle-like nanoassemblies. In these aggregates, short worms and star micelles still hold their core-shell structures. Furthermore, these unconventional superstructures are well interrelated with their luminescence properties. This result challenges the conventional paradigm of the amphiphilic self-assembly of surfactants and block copolymers in selective solvents, where they form bilayered nanostructures and are required universally to be rearranged during the morphological transition from micelles to vesicles.
研究了形成嵌段共聚物-铂(ii)配合物杂化物蠕虫状胶束的自组装过程,考察了溶剂质量的影响。当溶剂质量适度减弱时,可获得单分子层自由站立的薄片,其中蠕虫状胶束断裂,与一些短蠕虫一起形成星形胶束。极端恶化的溶剂质量导致单分子层囊泡状纳米结构,仅在其上出现星形胶束。在中间溶剂质量下,薄片与囊泡状纳米结构共存。这与关于从片状到囊泡状纳米组装体的形态转变的机理见解很好地相关。在这些聚集体中,短蠕虫和星形胶束仍然保持其核壳结构。此外,这些非常规超结构与其发光性质密切相关。该结果挑战了在选择性溶剂中两亲性表面活性剂和嵌段共聚物的自组装的传统范例,其中它们形成双层纳米结构,并且普遍要求在从胶束到囊泡的形态转变过程中进行重排。