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Formation of nanostructured materials via coalescence of amphiphilic hollow particles

机译:通过两亲性中空粒子的聚结形成纳米结构材料

摘要

A new, simplified route to amphiphilic core−shell nanotubes, microfibers, and microrods has been developed that does not involve the traditional utilization of well-defined block copolymers. Thus, amphiphilic graft copolymers (PEI-g-PMMA) are prepared by an aqueous free radical polymerization that self-assemble in situ to form uniform core−shell nanoparticles. The hydrophobic homopolymer (PMMA) that is also formed is incorporated in the cores. Slight cross-linking of the shells followed by extraction of the homopolymer results in hollow nanoparticles that coalesce to form nanotubes. When the shells are not cross-linked, the hollow particles coalesce to form microrods and microfibers. The sizes and shapes of the micromaterials can be controlled by varying the experimental conditions.
机译:已经开发出一种新的,简化的制造两亲核壳纳米管,微纤维和微棒的途径,该途径不涉及对定义明确的嵌段共聚物的传统利用。因此,两性接枝共聚物(PEI-g-PMMA)是通过水性自由基聚合反应制备的,该自由基聚合反应原位自组装形成均匀的核壳纳米粒子。也形成的疏水均聚物(PMMA)被掺入芯中。壳的轻微交联,然后提取均聚物,导致空心纳米颗粒聚结形成纳米管。当壳不交联时,空心颗粒聚结形成微棒和微纤维。可以通过改变实验条件来控制微材料的尺寸和形状。

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