Department of Chemical and Biological Engineering, University of Wisconsin-Madison, WI 53706, USA.
Small. 2013 Dec 20;9(24):4168-74. doi: 10.1002/smll.201300462. Epub 2013 Jul 10.
The organization of metallic nanoparticles (NPs) into ordered arrays on nanopatterned surfaces is an enabling process to fabricate devices and study the properties of the particles. Tailoring the interaction between NPs and nanopatterns is a necessity to gain a high level of control in this process. Here, nanopatterned poly(ethylene glycol) (PEG) brushes are presented as a platform for the organization of Au NPs on surfaces. The binding of citrate-stabilized Au NPs to the PEG brushes depends on the size of the particles and molecular weight of the brushes: the density of NPs immobilized on the nanopatterns of PEG brushes increases with decreasing the diameter of the particles and increasing the chain length of the brushes. The key aspect of the process is to pattern PEG brushes with high resolution and chemical contrast to provide controllable and specific interaction between Au NPs and nanopatterns at a single particle resolution. The modulation of the number (0-4) of Au NPs (e.g., 30 nm) per patterned feature with a high level of accuracy and the generation of patterned heterostructures that consist of two different sizes (e.g., 40 and 20 nm) of particles constitute two examples showing the capabilities of the presented platform.
将金属纳米粒子(NPs)有序地排列在纳米图案化表面上,是制造器件和研究粒子性质的一种有效方法。为了在这个过程中获得高度的控制,需要对 NPs 和纳米图案之间的相互作用进行调整。在这里,我们提出了纳米图案化聚乙二醇(PEG)刷作为表面上 Au NPs 组织的平台。柠檬酸稳定的 Au NPs 与 PEG 刷的结合取决于颗粒的大小和刷的分子量:固定在 PEG 刷纳米图案上的 NPs 的密度随着颗粒直径的减小和刷链长度的增加而增加。该过程的关键方面是对 PEG 刷进行高分辨率和化学对比度的图案化,以在单个颗粒分辨率下提供 Au NPs 和纳米图案之间可控且特定的相互作用。以高精度调制每图案特征的 Au NPs(例如,30nm)的数量(0-4),并生成由两种不同尺寸(例如,40nm 和 20nm)的颗粒组成的图案化异质结构,这两个例子展示了所提出的平台的能力。