IBM Almaden Research Center, 650 Harry Road, San Jose, California 95120, USA.
Langmuir. 2013 Mar 19;29(11):3567-74. doi: 10.1021/la4000457. Epub 2013 Mar 4.
We present a simple and facile strategy for the directed self-assembly of nanoparticles into complex geometries using a minimal set of post guiding features patterned on a substrate. This understanding is based on extensive studies of nanoparticle self-assembly into linear, dense-packed, circular, and star-shaped ensembles when coated onto patterned substrates of predefined post arrays. We determined the conditions under which nanoparticles assemble and "connect" two adjacent post features, thereby forming the desired shapes. We demonstrate that with rational design of the post patterns to enforce the required pairwise interactions with posts, we can create arbitrary arrangements of nanoparticles-for example, to write "IBM" in a deterministic manner. This demonstration of programmable, high-throughput directed self-assembly of nanoparticles shows an alternative route to generate functional nanoparticle assemblies.
我们提出了一种简单而灵活的策略,通过在基板上设计最小数量的后导图案特征,将纳米粒子定向自组装成复杂的几何形状。这一理解是基于对纳米粒子在预定义的柱阵列图案化基板上自组装成线性、密集、圆形和星形聚集体的广泛研究。我们确定了纳米粒子组装并“连接”两个相邻柱特征的条件,从而形成所需的形状。我们证明,通过合理设计柱图案以强制与柱进行所需的成对相互作用,我们可以创建纳米粒子的任意排列,例如以确定的方式写出“IBM”。这种可编程、高通量的纳米粒子定向自组装的演示为生成功能性纳米粒子组装体提供了一种替代途径。