Muzaffar-Kawasma Riham, Oded Meirav, Shenhar Roy
Institute of Chemistry and the Center for Nanoscience and Nanotechnology, The Hebrew University of Jerusalem, Jerusalem 9190401, Israel.
Materials (Basel). 2022 Apr 18;15(8):2949. doi: 10.3390/ma15082949.
The collective properties of ordered ensembles of anisotropically shaped nanoparticles depend on the morphology of organization. Here, we describe the utilization of block copolymer micelles to bias the natural packing tendency of semiconductor nanorods and organize them into circularly arranged superstructures. These structures are formed as a result of competition between the segregation tendency of the nanorods in solution and in the polymer melt; when the nanorods are highly compatible with the solvent but prefer to segregate in the melt to the core-forming block, they migrate during annealing toward the core-corona interface, and their superstructure is, thus, templated by the shape of the micelle. The nanorods, in turn, exhibit surfactant-like behavior and protect the micelles from coalescence during annealing. Lastly, the influence of the attributes of the micelles on nanorod organization is also studied. The circular nanorod arrangements and the insights gained in this study add to a growing list of possibilities for organizing metal and semiconductor nanorods that can be achieved using rational design.
各向异性形状的纳米颗粒有序集合体的集体性质取决于组织形态。在此,我们描述了利用嵌段共聚物胶束来偏向半导体纳米棒的自然堆积趋势,并将它们组织成圆形排列的超结构。这些结构是纳米棒在溶液和聚合物熔体中的偏析趋势之间竞争的结果;当纳米棒与溶剂高度相容,但在熔体中更倾向于偏析到形成核的嵌段时,它们在退火过程中向核-冠界面迁移,因此,它们的超结构由胶束的形状决定。反过来,纳米棒表现出类似表面活性剂的行为,并在退火过程中保护胶束不发生聚结。最后,还研究了胶束属性对纳米棒组织的影响。本研究中获得的圆形纳米棒排列和见解增加了通过合理设计来组织金属和半导体纳米棒的可能性。