Istituto Italiano di Tecnologia, Via Morego 30, 16163 Genova, Italy.
Nano Lett. 2010 Feb 10;10(2):743-9. doi: 10.1021/nl903946n.
Arranging anisotropic nanoparticles into ordered assemblies remains a challenging quest requiring innovative and ingenuous approaches. The variety of interactions present in colloidal solutions of nonspherical inorganic nanocrystals can be exploited for this purpose. By tuning depletion attraction forces between hydrophobic colloidal nanorods of semiconductors, dispersed in an organic solvent, these could be assembled into 2D monolayers of close-packed hexagonally ordered arrays directly in solution. Once formed, these layers could be fished onto a substrate, and sheets of vertically standing rods were fabricated, with no additional external bias applied. Alternatively, the assemblies could be isolated and redispersed in polar solvents, yielding suspensions of micrometer-sized sheets which could be chemically treated directly in solution. Depletion attraction forces were also effective in the shape-selective separation of nanorods from binary mixtures of rods and spheres. The reported procedures have the potential to enable powerful and cost-effective fabrication approaches to materials and devices based on self-organized anisotropic nanoparticles.
将各向异性纳米粒子排列成有序组装体仍然是一项具有挑战性的任务,需要创新和巧妙的方法。可以利用胶体中非球形无机纳米晶体溶液中存在的各种相互作用来实现这一目的。通过调整分散在有机溶剂中的半导体疏水性胶体纳米棒之间的耗散吸引力,可以将其组装成 2D 单层紧密排列的六边形有序阵列直接在溶液中。一旦形成,这些层可以被捞到基底上,并制造出垂直排列的棒的薄片,而无需施加额外的外部偏置。或者,这些组装体可以被分离并重新分散在极性溶剂中,得到微米级薄片的悬浮液,这些薄片可以直接在溶液中进行化学处理。耗散吸引力在选择性分离纳米棒和棒-球二元混合物方面也很有效。所报道的程序有可能实现基于自组织各向异性纳米粒子的强大且具有成本效益的材料和器件制造方法。