Department of Materials Engineering, The Ben Gurion University of the Negev, Beer-Sheva, Israel.
Nanotechnology. 2010 Apr 9;21(14):145305. doi: 10.1088/0957-4484/21/14/145305. Epub 2010 Mar 10.
Patterning of nanoparticles on solid substrates is one of the main challenges of current nanotechnology applications. The use of organic molecules as templates for the deposition of the nanoparticles makes it possible to utilize simple soft lithography techniques for patterning. Peptides appear to be powerful candidates for this job due to their versatility and design flexibility. In this work, we demonstrate the use of dual-affinity peptides, which bind both to the substrate and to the deposited nanoparticles, as single-layer linkers for the creation of multi-component nanoparticle patterns via microcontact printing processes. Controlled deposition and patterning of gold colloids or carbon nanotubes (CNTs) on silicon oxide surfaces and that of silicon oxide nanoparticles on gold surfaces have been achieved by the use of the corresponding dual-affinity peptides. Furthermore, patterning of both gold colloids and CNTs on a single substrate on predefined locations has been achieved. The suggested generic approach offers great flexibility by allowing binding of any material to a substrate of choice, provided that a peptide binding segment has been engineered for each of the inorganic components. Furthermore, the diversity of possible peptide sequences allows the formation of multi-component patterns, paving the way to fabricating complex functional structures based on peptide templates.
在固体基底上对纳米粒子进行图案化是当前纳米技术应用的主要挑战之一。使用有机分子作为纳米粒子沉积的模板,可以利用简单的软光刻技术进行图案化。由于其多功能性和设计灵活性,肽似乎是这项工作的有力候选者。在这项工作中,我们展示了使用双亲和肽作为单层连接物,通过微接触印刷工艺来创建多组分纳米粒子图案,这些双亲和肽既可以与基底结合,也可以与沉积的纳米粒子结合。通过使用相应的双亲和肽,已经实现了金胶体或碳纳米管(CNT)在氧化硅表面上的受控沉积和图案化,以及氧化硅纳米颗粒在金表面上的沉积和图案化。此外,还实现了在单个基底上的预定义位置上对金胶体和 CNT 的图案化。所提出的通用方法提供了很大的灵活性,允许将任何材料结合到所选的基底上,只要为每个无机组件设计了一个结合肽片段。此外,可能的肽序列的多样性允许形成多组分图案,为基于肽模板制造复杂功能结构铺平了道路。